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III-V semiconductors
Molecular, atomic, ion, and c...
Quantum dots
Beam trapping, self-focusing ...
Optical solitons; nonlinear g...
Structure of clean surfaces
Other nonlinear optical mater...
Self-assembly
Scanning tunneling microscopy
Thin film structure and morph...
Atomic force microscopy
Quantum wells
Kinetics of defect formation ...
Spectroscopy of solid state d...
III-V and II-VI semiconductors
1.
Mazur Yu. I.; Dorogan V. G.; Salamo G. J.; Tarasov G. G.; Liang B. L.; Reyner C. J.; Nunna K.; Huffaker D. L.
Coexistence of type-I and type-II band alignments in antimony-incorporated InAsSb quantum dot nanostructures
2.
Li C.; Zeng Z. Q.; Fan D. S.; Hirono Y.; Wu J.; Morgan T. A.; Hu X.; Yu S. Q.; Wang Zh. M.; Salamo G. J.
Bismuth nano-droplets for group-V based molecular-beam droplet epitaxy
3.
Zhou X.; Sanwlani S.; Liu W.; Lee J. H.; Wang Zh. M.; Salamo G.; Doty M. F.
Spectroscopic signatures of many-body interactions and delocalized states in self-assembled lateral quantum dot molecules
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4.
Kunets Vas. P.; Prosandeev S.; Mazur Yu. I.; Ware M. E.; Teodoro M. D.; Dorogan V. G.; Lytvyn P. M.; Salamo G. J.
Isotropic Hall effect and “freeze-in” of carriers in the InGaAs self-assembled quantum wires
5.
Mazur Yu. I.; Dorogan V. G.; Marega E.; Tarasov G. G.; Salamo G. J.
Spectroscopic signature of strain-induced quantum dots created by buried InAs quantum dots in an InGaAs quantum well
6.
Duchesne D.; Rutkowska K. A.; Volatier M.; Légaré F.; Delprat S.; Chaker M.; Modotto D.; Locatelli A.; De Angelis C.; Sorel M.; Christodoulides D. N.; Salamo G.; Arès R.; Aimez V.; Morandotti R.
Second harmonic generation in AlGaAs photonic wires using low power continuous wave light
7.
Strelchuk V. V.; Bryksa V. P.; Avramenko K. A.; Valakh M. Ya.; Belyaev A. E.; Mazur Yu. I.; Ware M. E.; DeCuir E. A.; Salamo G. J.
Confocal Raman depth-scanning spectroscopic study of phonon-plasmon modes in GaN epilayers
8.
Dubslaff M.; Hanke M.; Burghammer M.; Schöder S.; Hoppe R.; Schroer C. G.; Mazur Yu. I.; Wang Zh. M.; Lee J. H.; Salamo G. J.
In(Ga)As/GaAs(001) quantum dot molecules probed by nanofocus high resolution x-ray diffraction with 100 nm resolution
9.
Dvoyan K. G.; Kazaryan E. M.; Tshantshapanyan A. A.; Wang Zh. M.; Salamo G. J.
Electronic states and light absorption in quantum dot molecule
10.
Cesar D. F.; Teodoro M. D.; Lopez-Richard V.; Marques G. E.; Jr. E. Marega; Dorogan V. G.; Mazur Yu. I.; Salamo G. J.
Carrier transfer in the optical recombination of quantum dots
11.
Mazur Yu. I.; Dorogan V. G.; Marega E.; Benamara M.; Zhuchenko Z. Ya.; Tarasov G. G.; Lienau C.; Salamo G. J.
Excited state coherent resonant electronic tunneling in quantum well-quantum dot hybrid structures
12.
Saini Viney; Li Zhongrui; Bourdo Shawn; Kunets Vasyl P.; Trigwell Steven; Couraud Arthur; Rioux Julien; Boyer Cyril; Nteziyaremye Valens; Dervishi Enkeleda; Biris Alexandru R.; Salamo Gregory J.; Viswanathan Tito; Biris Alexandru S.
Photovoltaic devices based on high density boron-doped single-walled carbon nanotube/n-Si heterojunctions
13.
Kunets Vas. P.; Teodoro M. D.; Dorogan V. G.; Lytvyn P. M.; Tarasov G. G.; Sleezer R.; Ware M. E.; Mazur Yu. I.; Krasinski J. S.; Salamo G. J.
Interface roughness scattering in laterally coupled InGaAs quantum wires
14.
Mazur Yu. I.; Dorogan V. G.; Guzun D.; Marega E.; Salamo G. J.; Tarasov G. G.; Govorov A. O.; Vasa P.; Lienau C.
Measurement of coherent tunneling between InGaAs quantum wells and InAs quantum dots using photoluminescence spectroscopy
15.
Mazur Yu. I.; Dorogan V. G.; Marega E.; Zhuchenko Z. Ya.; Ware M. E.; Benamara M.; Tarasov G. G.; Vasa P.; Lienau C.; Salamo G. J.
Tunneling-barrier controlled excitation transfer in hybrid quantum dot-quantum well nanostructures
16.
Sablon K. A.; Little J. W.; Olver K. A.; Wang Zh. M.; Dorogan V. G.; Mazur Yu. I.; Salamo G. J.; Towner F. J.
Effects of AlGaAs energy barriers on InAs/GaAs quantum dot solar cells
17.
Dobbert J.; Tran L.; Hatami F.; Masselink W. T.; Kunets Vas. P.; Salamo G. J.
Low frequency noise in InSb/GaAs and InSb/Si channels
18.
Cesar D. F.; Teodoro M. D.; Tsuzuki H.; Lopez-Richard V.; Marques G. E.; Rino J. P.; Lourenço S. A.; Marega E.; Dias I. F. L.; Duarte J. L.; González-Borrero P. P.; Salamo G. J.
Contrasting LH-HH subband splitting of strained quantum wells grown along [001] and [113] directions
19.
Creasey Megan; Li Xiaoqin; Lee J. H.; Wang Zh. M.; Salamo G. J.
Strongly confined excitons in self-assembled InGaAs quantum dot clusters produced by a hybrid growth method
20.
Teodoro M. D.; Campo V. L.; Lopez-Richard V.; Marega E.; Marques G. E.; Gobato Y. Galvão; Iikawa F.; Brasil M. J. S. P.; AbuWaar Z. Y.; Dorogan V. G.; Mazur Yu. I.; Benamara M.; Salamo G. J.
Aharonov-Bohm Interference in Neutral Excitons: Effects of Built-In Electric Fields
21.
Bozkurt M.; Grant V. A.; Ulloa J. M.; Campion R. P.; Foxon C. T.; Marega E.; Salamo G. J.; Koenraad P. M.
Atomic scale characterization of Mn doped InAs/GaAs quantum dots
22.
Li Zhongrui; Saini Viney; Dervishi Enkeleda; Kunets Vasyl P.; Zhang Jianhui; Xu Yang; Biris Alexandru R.; Salamo Gregory J.; Biris Alexandru S.
Polymer functionalized n-type single wall carbon nanotube photovoltaic devices
23.
Guzun D.; DeCuir E. A.; Kunets Vas. P.; Mazur Yu. I.; Salamo G. J.; Murphy S. Q.; Jayathilaka P. A. R. Dilhani; Mishima T. D.; Santos M. B.
Comprehensive doping and temperature studies of spin relaxation in InSb
24.
Lee Jihoon H.; Wang Zhiming M.; Dorogan Vitaliy G.; Mazur Yuiry I.; Ware Morgan E.; Salamo Gregory J.
Tuning the emission profiles of various self-assembled InxGa1-xAs nanostructures by rapid thermal annealing
25.
Wu Jiang; Shao Dali; Li Zhenhua; Manasreh M. O.; Kunets Vasyl P.; Wang Zhiming M.; Salamo G. J.
Intermediate-band material based on GaAs quantum rings for solar cells
26.
Hanke M.; Dubslaff M.; Schmidbauer M.; Wang Zh. M.; Mazur Yu. I.; Lytvyn P. M.; Lee J. H.; Salamo G. J.
On the complex behavior of strain relaxation in (In,Ga)As/GaAs(001) quantum dot molecules
27.
Dorogan V. G.; Mazur Yu. I.; Marega E.; Tarasov G. G.; Ware M. E.; Salamo G. J.
Hybridized quantum dot-wetting layer states in photoluminescence of In(Ga)As/GaAs dot chain samples
28.
Hanke M.; Schmidbauer M.; Wang Zh. M.; Mazur Yu. I.; Seydmohamadi Sh.; Salamo G. J.; Mishima T. D.; Johnson M. B.
Peculiar three-dimensional ordering in (In,Ga)As/GaAs(311)B quantum dot superlattices
29.
Wu Jiang; Li Zhenhua; Shao Dali; Manasreh M. O.; Kunets Vasyl P.; Wang Zhiming M.; Salamo Gregory J.; Weaver B. D.
Multicolor photodetector based on GaAs quantum rings grown by droplet epitaxy
30.
Mazur Yu. I.; Dorogan V. G.; Marega E.; Tarasov G. G.; Cesar D. F.; Lopez-Richard V.; Marques G. E.; Salamo G. J.
Mechanisms of interdot coupling in (In,Ga)As/GaAs quantum dot arrays
31.
Flagg Edward B.; Robertson John W.; Founta Sébastien; Ma Wenquan; Xiao Min; Salamo Gregory J.; Shih Chih-Kang
Direct Evidence of Interlevel Exciton Transitions Mediated by Single Phonons in a Semiconductor Quantum Dot Using Resonance Fluorescence Spectroscopy
32.
Wang Zh. M.; Rodriguez C.; Seydmohamadi Sh.; Mazur Yu. I.; Xie Y. Z.; Salamo G. J.
Lateral alignment of InGaAs quantum dots as function of spacer thickness
33.
Li Zhongrui; Kunets Vasyl P.; Saini Viney; Xu Yang; Dervishi Enkeleda; Salamo Gregory J.; Biris Alexandru R.; Biris Alexandru S.
SOCl2 enhanced photovoltaic conversion of single wall carbon nanotube/n-silicon heterojunctions
34.
Dorogan V. G.; Mazur Yu. I.; Lee J. H.; Wang Zh. M.; Ware M. E.; Salamo G. J.
Thermal peculiarity of AlAs-capped InAs quantum dots in a GaAs matrix
35.
Kunets Vas. P.; Morgan T. Al.; Mazur Yu. I.; Dorogan V. G.; Lytvyn P. M.; Ware M. E.; Guzun D.; Shultz J. L.; Salamo G. J.
Deep traps in GaAs/InGaAs quantum wells and quantum dots, studied by noise spectroscopy
36.
Vasa P.; Pomraenke R.; Schwieger S.; Salamo G.; Runge E.; Kim D. S.; Kihm J. E.; Johnson E.; Srinivasan P.; Kunets Vas.; Mazur Yu. I.; Lienau C.
Coherent Exciton–Surface-Plasmon-Polariton Interaction in Hybrid Metal-Semiconductor Nanostructures
37.
Mazur Yu. I.; Abu Waar Z. Y.; Mishima T. D.; Lee J. H.; Tarasov G. G.; Liang B. L.; Dorogan V. G.; Ware M. E.; Wang Zh. M.; Johnson M. B.; Salamo G. J.
Spectroscopic observation of developing InAs quantum dots on GaAs ringlike-nanostructured templates
38.
Suntsov S.; Makris K. G.; Christodoulides D. N.; Stegeman G. I.; Morandotti R.; Volatier M.; Aimez V.; Arès R.; Yang E. H.; Salamo G.
Optical spatial solitons at the interface between two dissimilar periodic media: theory and experiment
39.
Wang B. R.; Sun B. Q.; Ji Y.; Dou X. M.; Xu Z. Y.; Wang Zh. M.; Salamo G. J.
Optical study of lateral carrier transfer in (In,Ga)As/;GaAs quantum-dot chains
40.
Sablon K. A.; Lee J. H.; Wang Zh. M.; Shultz J. H.; Salamo G. J.
Configuration control of quantum dot molecules by droplet epitaxy
41.
Teodoro M. D.; Dias I. F. L.; Laureto E.; Duarte J. L.; González-Borrero P. P.; Lourenço S. A.; Mazzaro I.; Marega E.; Salamo G. J.
Substrate orientation effect on potential fluctuations in multiquantum wells of GaAs/;AlGaAs
42.
Mazur Yu. I.; Noda S.; Tarasov G. G.; Dorogan V. G.; Salamo G. J.; Bierwagen O.; Masselink W. T.; Decuir E. A.; Manasreh M. O.
Excitonic band edges and optical anisotropy of InAs/;InP quantum dot structures
43.
Lee J. H.; Sablon K.; Wang Zh. M.; Salamo G. J.
Evolution of InGaAs quantum dot molecules
44.
Pomraenke Robert; Lienau Christoph; Mazur Yuriy I.; Wang Zhiming M.; Liang Baolai; Tarasov Georgiy G.; Salamo Gregory J.
Near-field optical spectroscopy of GaAs/;AlyGa1-y;As quantum dot pairs grown by high-temperature droplet epitaxy
45.
Hanke M.; Wang Zh. M.; Mazur Yu. I.; Lee J. H.; Salamo G. J.; Schmidbauer M.
Step bunch assisted two dimensional ordering of In0.19Ga0.81As/;GaAs quantum dots on vicinal GaAs(001) surfaces
46.
Cooke D. G.; Hegmann F. A.; Mazur Yu. I.; Wang Zh. M.; Black W.; Wen H.; Salamo G. J.; Mishima T. D.; Lian G. D.; Johnson M. B.
Ultrafast carrier capture dynamics in InGaAs/;GaAs quantum wires
47.
Passmore Brandon S.; Wu Jiang; Manasreh M. O.; Salamo G. J.
Dual broadband photodetector based on interband and intersubband transitions in InAs quantum dots embedded in graded InGaAs quantum wells
48.
Muller A.; Flagg E. B.; Bianucci P.; Wang X. Y.; Deppe D. G.; Ma W.; Zhang J.; Salamo G. J.; Xiao M.; Shih C. K.
Resonance Fluorescence from a Coherently Driven Semiconductor Quantum Dot in a Cavity
49.
Suntsov S.; Makris K. G.; Christodoulides D. N.; Stegeman G. I.; Morandotti R.; Yang H.; Salamo G.; Sorel M.
Power thresholds of families of discrete surface solitons
50.
Lytvyn P. M.; Strelchuk V. V.; Kolomys O. F.; Prokopenko I. V.; Valakh M. Ya.; Mazur Yu. I.; Wang Zh. M.; Salamo G. J.; Hanke M.
Two-dimensional ordering of (In,Ga)As quantum dots in vertical multilayers grown on GaAs(100) and (n11)
51.
Lai Bo-Kuai; Ponomareva Inna; Kornev Igor; Bellaiche L.; Salamo Greg
Thickness dependency of 180° stripe domains in ferroelectric ultrathin films; A first-principles-based study
52.
Schmidbauer M.; Wang Zh. M.; Mazur Yu. I.; Lytvyn P. M.; Salamo G. J.; Grigoriev D.; Schäfer P.; Köhler R.; Hanke M.
Initial stages of chain formation in a single layer of (In,Ga)As quantum dots grown on GaAs (100)
53.
Hussein M. L.; Marega E.; Salamo G. J.
3D Self‐Organization of InGaAs Quantum Dots Grown Over GaAs 〈001〉
54.
Hanke M.; Mazur Yu. I.; Marega E.; AbuWaar Z. Y.; Salamo G. J.; Schäfer P.; Schmidbauer M.
Shape transformation during overgrowth of InGaAs/;GaAs(001) quantum rings
55.
Lozovski V.; Vasilenko V.; Mazur Yu.; Tarasov G.; Salamo G.
Near-field imaging of surfaces with Gaussian distribution of carriers
56.
Liang B. L.; Wang Zh. M.; Mazur Yu. I.; Seydmohamadi Sh.; Ware M. E.; Salamo G. J.
Tuning the optical performance of surface quantum dots in InGaAs/GaAs hybrid structures
57.
Wang Zh. M.; Liang B. L.; Sablon K. A.; Salamo G. J.
Nanoholes fabricated by self-assembled gallium nanodrill on GaAs(100)
58.
Lai Bo-Kuai; Ponomareva Inna; Kornev Igor A.; Bellaiche L.; Salamo G. J.
Domain evolution of BaTiO3 ultrathin films under an electric field: A first-principles study
59.
Ma Zhixun; Holden Todd; Wang Zhiming M.; Salamo Gregory J.; Malikova Lyudmila; Mao Samuel S.
Strain-induced electronic energy changes in multilayered InGaAs/;GaAs quantum wire structures
60.
AbuWaar Ziad Y.; Mazur Yuriy I.; Lee Jihoon H.; Wang Zhiming M.; Salamo Gregory J.
Optical behavior of GaAs/;AlGaAs ringlike nanostructures
61.
Mazur Yu. I.; Liang B. L.; Wang Zh. M.; Tarasov G. G.; Guzun D.; Salamo G. J.
Development of continuum states in photoluminescence of self-assembled InGaAs/;GaAs quantum dots
62.
Liang B. L.; Wang Zh. M.; Mazur Yu. I.; Salamo G. J.
Photoluminescence of surface InAs quantum dot stacking on multilayer buried quantum dots
63.
Lee J. H.; Wang Zh. M.; Salamo G. J.
Survival of atomic monolayer steps during oxide desorption on GaAs (100)
64.
Liang B. L.; Wang Zh. M.; Lee J. H.; Sablon K. A.; Mazur Yu. I.; Salamo G. J.
Annealing effect on GaAs droplet templates in formation of self-assembled InAs quantum dots
65.
Lee J. H.; Wang Zh. M.; Strom N. W.; Mazur Yu. I.; Salamo G. J.
InGaAs quantum dot molecules around self-assembled GaAs nanomound templates
66.
Kim Dong Jun; Salamo Gregory J.; Cha Deokjoon; Yang Haeyeon
Enabling in situ atomic scale surface imaging for vertical molecular beam epitaxy machines
67.
Chauvet Mathieu; Fu Guoyuan; Salamo Gregory
Assessment method for photo-induced waveguides
68.
Mazur Yu. I.; Liang B. L.; Wang Zh. M.; Guzun D.; Salamo G. J.; Zhuchenko Z. Ya.; Tarasov G. G.
Excitonic transfer in coupled InGaAs/;GaAs quantum well to InAs quantum dots
69.
DeCuir E. A.; Fred Emil; Passmore B. S.; Muddasani A.; Manasreh M. O.; Xie Jinqiao; Morkoç Hadis; Ware M. E.; Salamo G. J.
Near-infrared wavelength intersubband transitions in GaN/;AlN short period superlattices
70.
Liang B. L.; Wang Zh. M.; Lee J. H.; Sablon K.; Mazur Yu. I.; Salamo G. J.
Erratum: “Low density ;InAs quantum dots grown on GaAs nanoholes” [Appl. Phys. Lett. ;89, 043113 (2006)]
71.
Mazur Yu. I.; Liang B. L.; Wang Zh. M.; Guzun D.; Salamo G. J.; Tarasov G. G.; Zhuchenko Z. Ya.
Time-resolved photoluminescence spectroscopy of subwetting layer states in InGaAs/;GaAs quantum dot structures
72.
Mazur Yu. I.; Liang B. L.; Wang Zh. M.; Tarasov G. G.; Guzun D.; Salamo G. J.; Mishima T. D.; Johnson M. B.
Lengthening of the photoluminescence decay time of InAs quantum dots coupled to InGaAs/;GaAs quantum well
73.
Hanke M.; Schmidbauer M.; Grigoriev D.; Schäfer P.; Köhler R.; Metzger T. H.; Wang Zh. M.; Mazur Yu. I.; Salamo G. J.
Zero-strain GaAs quantum dot molecules as investigated by x-ray diffuse scattering
74.
Liang B. L.; Wang Zh. M.; Mazur Yu. I.; Salamo G. J.; DeCuir Eric A.; Manasreh M. O.
Correlation between surface and buried InAs quantum dots
75.
Low density InAs quantum dots grown on GaAs nanoholes
76.
Ga-triggered oxide desorption from GaAs(100) and non-(100) substrates
77.
Wang Zh. M.; Lee J. H.; Liang B. L.; Black W. T.; Kunets Vas. P.; Mazur Yu. I.; Salamo G. J.
Localized formation of InAs quantum dots on shallow-patterned GaAs(100)
78.
Chauvet Mathieu; Guo Aqiang; Fu Guoyan; Salamo Gregory
Electrically switched photoinduced waveguide in unpoled strontium barium niobate
79.
Lai Bo-Kuai; Ponomareva I.; Naumov I. I.; Kornev I.; Fu Huaxiang; Bellaiche L.; Salamo G. J.
Electric-Field-Induced Domain Evolution in Ferroelectric Ultrathin Films
80.
Schmidbauer M.; Seydmohamadi Sh.; Grigoriev D.; Wang Zh. M.; Mazur Yu. I.; Schäfer P.; Hanke M.; Köhler R.; Salamo G. J.
Controlling Planar and Vertical Ordering in Three-Dimensional (In,Ga)As Quantum Dot Lattices by GaAs Surface Orientation
81.
Suntsov S.; Makris K. G.; Christodoulides D. N.; Salamo G.; Yang H.; Morandotti R.; Haché A.; Stegeman G. I.; Sorel M.
Observation of Discrete Surface Solitons
82.
Wang Zh. M.; Mazur Yu. I.; Shultz J. L.; Salamo G. J.; Mishima T. D.; Johnson M. B.
One-dimensional postwetting layer in InGaAs/;GaAs(100) quantum-dot chains
83.
Mazur Yu. I.; Salamo G. J.; Tarasov G. G.; Wang Zh. M.; Tomm J. W.; Talalaev V.; Kissel H.
Retraction: Nonresonant tunneling carrier transfer in bilayer asymmetric InAs/GaAs quantum dots [Phys. Rev. B 71, 235313 (2005)]
84.
Mazur Yu. I.; Wang Zh. M.; Salamo G. J.; Strelchuk V. V.; Kladko V. P.; Machulin V. F.; Valakh M. Ya.; Manasreh M. O.
Investigation of indium distribution in InGaAs/;GaAs quantum dot stacks using high-resolution x-ray diffraction and Raman scattering
85.
Meier J.; Stegeman George I.; Christodoulides Demetrios N.; Morandotti R.; Salamo G.; Yang H.; Sorel M.; Silberberg Y.; Aitchison J. Stewart
Incoherent blocker soliton interactions in Kerr waveguide arrays
86.
Wang Zh. M.; Mazur Y. I.; Seydmohamadi Sh.; Salamo G. J.; Kissel H.
Photoluminescence linewidths from multiple layers of laterally self-ordered InGaAs quantum dots
87.
Kunets Vas. P.; Mazur Yu. I.; Salamo G. J.; Bierwagen O.; Masselink W. T.
Doped-channel micro-Hall devices: Size and geometry effects
88.
Mazur Yu. I.; Lian Guoda D.; Mishima T. D.; Salamo G. J.; Xiao M.; Guzun D.; Strelchuk V.; Wen H.; Tarasov G. G.; Wang Zh. M.; Johnson M. B.
Strong optical nonlinearity in strain-induced laterally ordered In0.4Ga0.6As quantum wires on GaAs (311)A substrate
89.
Mazur Yu. I.; Wang Zh. M.; Tarasov G. G.; Kunets Vas. P.; Salamo G. J.; Zhuchenko Z. Ya.; Kissel H.
Tailoring of high-temperature photoluminescence in InAs/;GaAs bilayer quantum dot structures
90.
Taylor Curtis R.; Stach Eric A.; Salamo Gregory; Malshe Ajay P.
Nanoscale dislocation patterning by ultralow load indentation
91.
Chauvet M.; Fazio E.; Maillotte H.; Coda V.; Salamo G.
Large self-deflection of soliton beams in LiNbO3
92.
Meier Joachim; Hudock Jared; Christodoulides Demetrios N.; Stegeman George I.; Yang Haeyeon; Salamo Greg; Morandotti Roberto; Aitchison J. Stewart; Silberberg Yaron
Excitation of strongly confined scalar and vector self-trapped beams in one-dimensional arrays of Kerr-nonlinear channel waveguides
93.
Wang Zh. M.; Mazur Yu. I.; Holmes K.; Salamo G. J.
Control on self-organization of InGaAs/GaAs(100) quantum-dot chains
94.
Kunets Vas. P.; Black W. T.; Mazur Yu. I.; Guzun D.; Salamo G. J.; Goel N.; Mishima T. D.; Deen D. A.; Murphy S. Q.; Santos M. B.
Highly sensitive micro-Hall devices based on Al0.12In0.88Sb/;InSb heterostructures
95.
Mazur Yu. I.; Wang Zh. M.; Tarasov G. G.; Salamo G. J.; Tomm J. W.; Talalaev V.; Kissel H.
Nonresonant tunneling carrier transfer in bilayer asymmetric InAs/;GaAs quantum dots
96.
Meier J.; Sorel M.; Salamo G.; Yang H.; Morandotti R.; Silberberg Y.; Christodoulides Demetrios N.; Stegeman George I.; Aitchison J. Stewart
Beam interactions with a blocker soliton in one-dimensional arrays
97.
Wang Zh. M.; Seydmohamadi Sh.; Yazdanpanah V. R.; Salamo G. J.
Surface dynamics during molecular-beam epitaxy of (In,Ga)As on GaAs(331)B: Formation of quantum wires with low In content
98.
Wang Zh. M.; Zhang L.; Holmes K.; Salamo G. J.
Selective etching of InGaAs/GaAs(100) multilayers of quantum-dot chains
99.
Lai Bo-Kuai; Kornev Igor A.; Bellaiche L.; Salamo G. J.
Phase diagrams of epitaxial BaTiO3 ultrathin films from first principles
100.
Meier J.; Stegeman G. I.; Christodoulides D. N.; Morandotti R.; Sorel M.; Yang H.; Salamo G.; Aitchison J. S.; Silberberg Y.
Nonlinear beam interactions in 1D discrete Kerr systems
101.
Cho S. O.; Wang Zh. M.; Salamo G. J.
Evolution of elongated (In,Ga)As–GaAs(100) islands with low indium content
102.
Mazur Yu. I.; Wang Zh. M.; Tarasov G. G.; Xiao Min; Salamo G. J.; Tomm J. W.; Talalaev V.; Kissel H.
Interdot carrier transfer in asymmetric bilayer InAs/;GaAs quantum dot structures
103.
Wang Zh. M.; Churchill H.; George C. E.; Salamo G. J.
High anisotropy of lateral alignment in multilayered (In,Ga)As/GaAs(100) quantum dot structures
104.
Wang Zh. M.; Seydmohamadi Sh.; Lee J. H.; Salamo G. J.
Surface ordering of (In,Ga)As quantum dots controlled by GaAs substrate indexes
105.
Wen H.; Wang Zh. M.; Shultz J. L.; Liang B. L.; Salamo G. J.
Growth and characterization of InAs epitaxial layer on GaAs(111)B
106.
Cooke D. G.; Hegmann F. A.; Mazur Yu. I.; Ma W. Q.; Wang X.; Wang Z. M.; Salamo G. J.; Xiao M.; Mishima T. D.; Johnson M. B.
Anisotropic photoconductivity of InGaAs quantum dot chains measured by terahertz pulse spectroscopy
107.
Chua Ying Chao; Decuir E. A.; Passmore B. S.; Sharif K. H.; Manasreh M. O.; Wang Z. M.; Salamo G. J.
Tuning In0.3Ga0.7As/;GaAs multiple quantum dots for long-wavelength infrared detectors
108.
Ma W. Q.; Hussein M. L.; Shultz J. L.; Salamo G. J.; Mishima T. D.; Johnson M. B.
Enhancing the in-plane spatial ordering of quantum dots
109.
Wang Z. M.; Mazur Yu. I.; Salamo G. J.; Lytvin P. M.; Strelchuk V. V.; Valakh M. Ya.
Persistence of (In,Ga)As quantum-dot chains under index deviation from GaAs(100)
110.
Meier J.; Sorel M.; Salamo G.; Yang H.; Morandotti R.; Silberberg Y.; Christodoulides D. N.; Stegeman G. I.; Aitchison J. S.
Experimental Observation of Discrete Modulational Instability
111.
Wang Z. M.; Holmes K.; Mazur Yu. I.; Salamo G. J.
Fabrication of (In,Ga)As quantum-dot chains on GaAs(100)
112.
Wen H.; Wang Z. M.; Salamo G. J.
Atom-resolved scanning tunneling microscopy of (In,Ga)As quantum wires on GaAs(311)A
113.
Wang X. Y.; Wang Z. M.; Yazdanpanah V. R.; Salamo G. J.; Xiao Min
Polarization spectroscopy of InGaAs/GaAs quantum wires grown on (331)B GaAs templates with nanoscale fluctuations
114.
Mazur Yu. I.; Wang Z. M.; Salamo G. J.; Xiao Min; Tarasov G. G.; Zhuchenko Z. Ya.; Masselink W. T.; Kissel H.
Hidden resonant excitation of photoluminescence in bilayer arrays of InAs/GaAs quantum dots
115.
Wang Z. M.; Shultz J. L.; Salamo G. J.
Morphology evolution during strained (In,Ga)As epitaxial growth on GaAs vicinal (100) surfaces
116.
Mazur Yu. I.; Ma W. Q.; Wang X.; Wang Z. M.; Salamo G. J.; Xiao M.; Mishima T. D.; Johnson M. B.
InGaAs/GaAs three-dimensionally-ordered array of quantum dots
117.
Li Yong-qing; Salamo Greg; Guzun Dorel; Xiao Min
High-efficiency blue-light generation by frequency doubling of picosecond pulses in a thick KNbO3 crystal
118.
Pattada B.; Chen Jiayu; Zhou Qiaoying; Manasreh M. O.; Hussein M. L.; Ma W.; Salamo G. J.
Optical absorption of intersubband transitions in In0.3Ga0.7As/GaAs multiple quantum dots
119.
Yazdanpanah V. R.; Wang Z. M.; Salamo G. J.
Highly anisotropic morphologies of GaAs(331) surfaces
120.
Wang Z. M.; Wen H.; Yazdanpanah V. R.; Shultz J. L.; Salamo G. J.
Strain-driven facet formation on self-assembled InAs islands on GaAs (311)A
121.
Wang Z. M.; Salamo G. J.
Surface dynamics during phase transitions of GaAs(100)
122.
Manasreh M. O.; Friedman D. J.; Ma W. Q.; Workman C. L.; George C. E.; Salamo G. J.
Photoluminescence of metalorganic-chemical-vapor-deposition-grown GaInNAs/GaAs single quantum wells
123.
Ma Wenquan; Wang Xiaoyong; Xiao Min; Shultz John; Hussein Mohammad L.; Wang Zhiming; Salamo Gregory J.
Piezoelectric effect in elongated (In,Ga)As islands on GaAs(100)
124.
Wang Z. M.; Yazdanpanah V. R.; Workman C. L.; Ma W. Q.; Shultz J. L.; Salamo G. J.
Origin of step formation on the GaAs(311) surface
125.
Wood Clint; Salamo Gregory J.; Goff John; Wood Gary L.; Anderson Richard J.; McGee David J.
Fixed three‐dimensional holographic images
126.
Wang Z. M.; Yazdanpanah V. R.; Shultz J. L.; Salamo G. J.
GaAs(311) templates for molecular beam epitaxy growth: surface morphologies and reconstruction
127.
Mazur Yu. I.; Wang X.; Wang Z. M.; Salamo G. J.; Xiao M.; Kissel H.
Photoluminescence study of carrier transfer among vertically aligned double-stacked InAs/GaAs quantum dot layers
128.
Mu Xiaodong; Ding Yujie J.; Yang Haeyeon; Salamo Gregory J.
Vertically stacking self-assembled quantum wires
129.
Salamo Gregory; Berezin Alexander A.; Montgomery David; Birnbaum Howard
University Research Funding: More than Supporting the Best to Do the Best
130.
Berhane Y.; Manasreh M. O.; Yang H.; Salamo G. J.
Response to “Comment on ‘Thermal annealing effect on the intersublevel transitions in InAs quantum dots’ ” [Appl. Phys. Lett. ;80, 4867 (2002)]
131.
Yang Haeyeon; Mu Xiaodong; Ding Yujie J.; Zotova Ioulia B.; Salamo Gregory J.
Self-assembled InAs quantum wires on InP(001)
132.
Uzdin Raam; Segev Mordechai; Salamo Gregory J.
Theory of self‐focusing in photorefractive InP
133.
Klotz Matthew; Crosser Mike; Guo Aqiang; Henry Michael; Salamo Gregory J.; Segev Mordechai; Wood Gary L.
Fixing solitonic y junctions in photorefractive strontium–barium–niobate
134.
Mu Xiaodong; Zotova Ioulia B.; Ding Yujie J.; Yang Haeyeon; Salamo Gregory J.
Observation of an anomalously large blueshift of the photoluminescence peak and evidence of band-gap renormalization in InP/InAs/InP quantum wires
135.
Guo Aqiang; Henry Michael; Salamo Gregory J.; Segev Mordechai; Wood Gary L.
Fixing multiple waveguides induced by photorefractive solitons: directional couplers and beam splitters
136.
Cavity-enhanced and quasiphase-matched multi-order reflection-second-harmonic generation from GaAs/AlAs and GaAs/AlGaAs multilayers
137.
Ballet P.; Workman C. L.; Yang H.; Smathers J. B.; Salamo G. J.
Control of size and density of InAs/(Al, Ga)As self-organized islands
138.
Yang Haeyeon; Ballet P.; Salamo G. J.
Formation of quantum wires and dots on InP(001) by As/P exchange
139.
Thermal annealing effect on the intersublevel transitions in InAs quantum dots
140.
Lu Yan-qing; Xiao Min; Salamo Gregory J.
Wide-bandwidth high-frequency electro-optic modulator based on periodically poled LiNbO3
141.
Saadeh Shihadeh; Shultz John; Salamo Gregory
Experimental observation of chirped continuous pulse-train soliton solutions to the Maxwell-Bloch equations
142.
Ballet P.; Smathers J. B.; Yang H.; Workman C. L.; Salamo G. J.
Scanning tunneling microscopy investigation of truncated InP/GaInP2 self-assembled islands
143.
Hegeler F.; Manasreh M. O.; Morath C.; Ballet P.; Yang H.; Salamo G. J.; Tan H. H.; Jagadish Chennupati
Thermal annealing recovery of intersubband transitions in proton-irradiated GaAs/AlGaAs multiple quantum wells
144.
Ketchel Brian P.; Heid Christy A.; Wood Gary L.; Miller Mary J.; Mott Andrew G.; Anderson Richard J.; Salamo Gregory J.
Three-dimensional color holographic display
145.
Manasreh M. O.; Ballet P.; Smathers J. B.; Salamo G. J.; Jagadish Chennupati
Proton irradiation effects on the intersubband transition in GaAs/AlGaAs multiple quantum wells with bulk or superlattice barriers
146.
Ballet P.; Smathers J. B.; Salamo G. J.
Morphology of InAs self-organized islands on AlAs surfaces
147.
Klotz Matt; Meng Hongxing; Salamo Gregory J.; Segev Mordechai; Montgomery Steven R.
Fixing the photorefractive soliton
148.
Thibado P. M.; Salamo G. J.; Baharav Y.
Robust optical delivery system for measuring substrate temperature during molecular beam epitaxy
149.
Smathers J. B.; Bullock D. W.; Gerace B.; Thibado P. M.; Salamo G. J.; Ding Z.; Wirth W.
Enabling in situ atomic-scale characterization of epitaxial surfaces and interfaces
150.
Heid Christy A.; Ketchel Brian P.; Wood Gary L.; Anderson Richard J.; Salamo Gregory J.
Three-dimensional holographic display using a photorefractive crystal
151.
Shih Ming-Feng; Segev Mordechai; Salamo Greg; Kivshar Yuri
Do interacting spatial solitons conserve angular momentum?
152.
Dovgalenko George E.; Haque M. S.; Kniazkov Anatoli; Onischenko Yuri I.; Salamo Gregory J.; Naseem Hameed A.
Stress measurement of deposited SiO2 films on a silicon wafer using dimensional-stability holographic interferometry test
153.
Afonso S.; Chen K. Y.; Xiong Q.; Tang Y. Q.; Salamo G. J.; Chan F. T.; Cooksey J.; Scott S.; Shi Y. J.; Ang S.; Brown W. D.; Schaper L. W.
Y1Ba2Cu3O7-x; multilayer structures with a thick SiO2 interlayer for multichip modules
154.
Ketchel Brian P.; Anderson Richard J.; Wood Gary L.; Salamo Gregory J.
Three-dimensional image reconstruction using strontium barium niobate
155.
Chauvet M.; Hawkins S. A.; Salamo G. J.; Segev M.; Bliss D. F.; Bryant G.
Self-trapping of two-dimensional optical beams and light-induced waveguiding in photorefractive InP at telecommunication wavelengths
156.
Shih Ming-feng; Segev Mordechai; Salamo Greg
Three-Dimensional Spiraling of Interacting Spatial Solitons
157.
Shultz John L.; Salamo Gregory J.
Experimental Observation of the Continuous Pulse-Train Soliton Solution to the Maxwell-Bloch Equations
158.
Dovgalenko George E.; Klotz Matthew; Salamo Gregory J.; Wood Gary L.
Bacteriorhodopsin as an optical limiter
159.
In-situ thin film stress measurement using high-stability portable holographic interferometer
160.
Self‐trapping of planar optical beams by use of the photorefractive effect in InP;Fe
161.
Dovgalenko George E.; Kniazkov Anatoli; Onischenko Yuri I.; Salamo Gregory J.
Fast residual stress determination of welded joints using reversible holographic interferometric (RHI) film
162.
Kos Konstantine; Meng Hongxing; Salamo Greg; Shih Ming-feng; Segev Mordechai; Valley George C.
One‐dimensional steady‐state photorefractive screening solitons
163.
Afonso S.; Chan F. T.; Chen K. Y.; Salamo G. J.; Tang Y. Q.; Wang R. C.; Xu X. L.; Xiong Q.; Florence G.; Scott S.; Ang S.; Brown W. D.; Schaper L. W.
Magnetic field and temperature dependence of critical current densities in multilayer YBa2Cu3O7-δ; films
164.
Xiong Q.; Xue Y. Y.; Salamo G.; Chan F. T.; Tang Y. Q.; Afonso S.; Chu C. W.
Magnetization of HgBa2CuO4+δ; with 0.03≤δ≤0.4
165.
Florence R. G.; Ang S. S.; Brown W. D.; Salamo G.; Schaper L. W.; Ulrich R. K.
Sputter‐deposited yttrium–barium–copper–oxide multilayer structures incorporating a thick interlayer dielectric material
166.
Anderson Richard J.; Sharp Edward J.; Wood Gary L.; Salamo Gregory J.
Image transfer by mutually pumped phase conjugators
167.
Optically induced birefringence in bacteriorhodopsin as an optical limiter
168.
Tang Y. Q.; Chen K. Y.; Afonso S.; Xu X. L.; Xiong Q.; Salamo G.; Chan F. T.; Guo R.; Bhalla A.
Epitaxial Tl2Ba2CaCu2O8 superconducting thin film on Sr2(AlTa)O6 buffer layer
169.
Yarrison-Rice Jan M.; Sharp Edward J.; Wood Gary L.; Salamo Gregory J.; Klank Robert; Neurgaonkar Ratnakar R.
High‐resolution phase‐conjugate imaging in double‐pumped phase conjugators
170.
Chen K. Y.; Afonso S.; Wang R. C.; Tang Y. Q.; Salamo G.; Chan F. T.; Guo R.; Bhalla A. S.
Epitaxial Sr2(AlTa)O6 films as buffer layers on MgO for YBa2Cu3O7-;x thin film growth
171.
Dovgalenko George E.; Onischenko Yuri I.; Loutchkina Irina I.; Salamo Gregory J.
Portable holographic interferometric device for aircraft inspecting
172.
Kewitsch Anthony S.; Towe Terrence W.; Salamo Gregory J.; Yariv Amnon; Zhang Min; Segev Mordechai; Sharp Edward J.; Neurgaonkar Ratnakar R.
Optically induced quasi‐phase matching in strontium barium niobate
173.
Duree Galen; Morin Matthew; Salamo Gregory; Segev Mordechai; Crosignani Bruno; Di Porto Paolo; Sharp Edward; Yariv Amnon
Dark photorefractive spatial solitons and photorefractive vortex solitons
174.
Single-beam adaptive holographic interferometry (AHI) and small-size devices for industrial inspection
175.
Segev Mordechai; Salamo Gregory; Duree Galen; Morin Matthew; Crosignani Bruno; Di Porto Paolo; Yariv Amnon
Photorefractive dark and vortex solitons
176.
Kewitsch Anthony S.; Segev Mordechai; Yariv Amnon; Salamo Gregory J.; Towe Terrence W.; Sharp Edward J.; Neurgaonkar Ratnakar R.
Erratum: ‘‘Ferroelectric domain gratings in strontium barium niobate induced by photorefractive space charge fields’’ [Phys. Rev. Lett. ;73, 1174 (1994)]
177.
Luo Wei; Yang Wen-Qing; Cheng Huan S.; Yue Dequan; Huang Ning; Zong Xiangfu; Tang Y. Q.; Sheng Z. Z.; Salamo Gregory J.; Chan F. T.
Preparation and characterization of Tl2Ba2Ca2Cu3Ox superconducting thin films
178.
Montgomery Steven R.; Gallagher Michael P.; Salamo Gregory J.; Sharp Edward J.; Wood Gary L.; Neurgaonkar Ratnakar R.
Cooperative photorefractive beam fanning in BaSrKNaNb5O15
179.
Duree, Jr. Galen C.; Salamo Gregory J.; Segev Mordechai; Yariv Amnon; Sharp Edward J.; Neurgaonkar Ratnakar R.
Photorefractive self-focusing and defocusing as an optical limiter
180.
Tunable quasi‐phase matching using ;dynamic ferroelectric domain gratings induced by photorefractive space‐charge fields
181.
Sharp Edward J.; Wood Gary L.; Salamo Gregory J.; Anderson Richard J.; Yarrison-Rice Jan M.; Neurgaonkar Ratnakar R.
Photorefractive image processing using mutually pumped phase conjugators
182.
Dovgalenko George E.; Salamo Gregory J.; Loutchkina Irina I.
Vector tensor algorithm for optimization of hologram images in photorefractive gyroanisotropic media
183.
Kukhtarev N.; Dovgalenko G.; Duree G. C.; Salamo G.; Sharp E. J.; Wechsler Barry A.; Klein Marvin B.
Single beam polarization holographic grating recording
184.
Segev Mordechai; Yariv Amnon; Salamo Gregory; Duree Galen; Shultz John; Crosignani Bruno; Di Porto Paolo; Sharp Ed
Photorefractive spatial solitons
185.
Tang Y. Q.; Chen K. Y.; Chan I. N.; Chen Z. Y.; Shi Y. J.; Salamo G. J.; Chan F. T.; Sheng Z. Z.
Superconducting TlSr2(Ca,Cr)Cu2O7 thin films with critical current density up to 106 A/cm2
186.
Duree Galen C.; Shultz John L.; Salamo Gregory J.; Segev Mordechai; Yariv Amnon; Crosignani Bruno; Di Porto Paolo; Sharp Edward J.; Neurgaonkar Ratnakar R.
Observation of self‐trapping of an optical beam due to the photorefractive effect
187.
Anderson Richard J.; Sharp Edward J.; Wood Gary L.; Clark William W.; Vuong Quochien; Salamo Gregory J.; Neurgaonkar Ratnakar R.
Mutually pumped phase conjugator as a moving‐object correlator
188.
Shultz John L.; Salamo Gregory J.; Sharp Edward J.; Wood Gary L.; Anderson Richard J.; Neurgaonkar Ratnakar R.
Enhancing the response time for photorefractive beam fanning
189.
Kukhtarev Nickolai V.; Gnatovskii A. V.; Zolochevskaja O. V.; Dovgalenko George E.; Pivtovak V.; Lobanov L.; Shultz John L.; Salamo Gregory J.; Sharp Edward J.; Kuargin Yu. I.
Holographic interferometry and image processing on reflection and transmission gratings in photorefractive materials
190.
Wood Gary L.; Sharp Edward J.; Salamo Gregory J.
Performance of photorefractive self-pumped phase conjugators
191.
Young M.; Yang X-L.; Li Y. F.; Tang Y. G.; Sheng Z. Z.; Salamo G. J.; Anderson R. J.; Chan F. T.
Superconducting Tl‐Ba‐Ca‐Cu‐O thin films
192.
Sharp Edward J.; Wood Gary L.; Clark William W.; Salamo Gregory J.; Neurgaonkar Ratnakar R.
Incoherent‐to‐coherent conversion using a photorefractive self‐pumped phase conjugator
193.
Wood Gary L.; Clark William W.; Salamo Gregory J.; Mott Andrew; Sharp Edward J.
Fluence limiting via photorefractive two‐beam coupling
194.
Salamo Gregory J.; Monson Brian D.; Clark William W.; Wood Gary L.; Sharp Edward J.; Neurgaonkar Ratnakar R.
Improved photorefractive time response using a cylindrical lens
195.
Clark William W.; Wood Gary L.; Miller Mary J.; Sharp Edward J.; Salamo Gregory J.; Monson Brian; Neurgaonkar Ratnakar R.
Enhanced photorefractive beam fanning due to internal and external electric fields
196.
Sharp Edward J.; Clark William W.; Miller Mary J.; Wood Gary L.; Monson Brian; Salamo Gregory J.; Neurgaonkar Ratnakar R.
Double phase conjugation in tungsten bronze crystals
197.
Monson Brian; Salamo Gregory J.; Mott Andrew G.; Miller Mary J.; Sharp Edward J.; Clark William W.; Wood Gary L.; Neurgaonkar Ratnakar R.
Self‐pumped phase conjugation with nanosecond pulses in strontium barium niobate
198.
Salamo Gregory J.; Miller Mary J.; Clark William W.; Wood Gary L.; Sharp Edward J.; Neurgaonkar Ratnakar
Photorefractive rainbows
199.
Germany G. A.; Anderson R. J.; Salamo G. J.
Electron impact excitation of the 3p(5P) state of atomic oxygen
200.
Montgomery Steven R.; Yarrison-Rice Jan; Pederson Donald O.; Salamo Gregory J.; Miller Mary J.; Clark William W.; Wood Gary L.; Sharp Edward J.; Neurgaonkar Ratnakar R.
Self‐pumped phase conjugation in the red in photorefractive Ba;0.5Sr1.5K0.25Na0.75Nb5O15 and Sr0.6Ba0.4Nb2O6 with cerium in 9‐fold coordinated sites
201.
Rodriguez Juan; Siahmakoun Azad; Salamo Gregory
Bistability and optical switching in a total internal reflection phase conjugator
202.
Rodriguez Juan; Salamo Gregory
Self‐oscillation in BaTiO;3 using a multimode laser
203.
Miller Mary J.; Sharp Edward J.; Wood Gary L.; Clark William W.; Salamo Gregory J.; Neurgaonkar Ratnakar R.
Time response of a cerium‐doped Sr;0.75Ba0.25Nb2O6 self‐pumped phase‐conjugate mirror
204.
Rodriguez Juan; Siahmakoun Azad; Salamo Gregory; Miller Mary J.; Clark W.; Wood Gary L.; Sharp Edward J.; Neurgaonkar Ratnakar R.
BSKNN as a self‐pumped phase conjugator
205.
Montgomery Steven R.; Pederson Donald O.; Salamo Gregory J.
Intensity profiles of short optical pulses via temporally reversed pulses
206.
Tung J. H.; Tang A. Z.; Salamo G. J.; Chan F. T.
Two‐Photon absorption of atomic hydrogen from two light beams
207.
Cresser J. D.; Tang A. Z.; Salamo G. J.; Chan F. T.
Lifetime of excited atomic states
208.
Tung J. H.; Ye X. M.; Salamo G. J.; Chan F. T.
Two‐photon decay of hydrogenic atoms
209.
Rose A.; Pyrum J. D.; Salamo G. J.; Gupta R.
Photoacoustic detection of OH molecules in a methane‐air flame
210.
Rose A.; Salamo G. J.; Gupta R.
Photoacoustic deflection spectroscopy a new specie‐specific method for combustion diagnostics
211.
Germany G. A.; Salamo G. J.; Anderson R. J.
Production of O(1D) and O(3P) by vacuum ultraviolet photodissociation of molecular oxygen
212.
Rose A.; Pyrum J. D.; Muzny C.; Salamo G. J.; Gupta R.
Application of the photothermal deflection technique to combustion diagnostics
213.
Tennal K.; Salamo G. J.; Gupta R.
Minority species concentration measurements in flames by the photoacoustic technique
214.
Day R. L.; Anderson R. J.; Salamo G. J.
Radiative‐lifetime measurements of the 4p5P, 4p3P, and 4d5D0 multiplets of O i
215.
Newbold Mark A.; Salamo Gregory J.
Power spectrum of light scattered by a two‐level atom in the presence of a pulse‐train driving field
70
Wang, Zhiming
63
Mazur, Yu. I.
21
Tarasov, Georgiy G.
17
Lee, Jihoon H.
Segev, Mordechai
Dorogan, Vitaliy G.
16
Yang, Haeyeon
15
Liang, BL
Kunets, Vasyl
14
Manasreh, MO
12
Xiao, Min
11
Mishima, Tetsuya D.
Ware, Morgan
10
Guzun, Dorel
Shultz, John