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Quantum dots
Optical transient phenomena: ...
Quantum computation architect...
Spectroscopy of solid state d...
Exchange, correlation, dielec...
Electron states and collectiv...
Metal-nonmetal contacts
Other semiconductor-to-semico...
Charged excitons
Strong-field excitation of op...
II-VI semiconductors
Narrow-band systems; intermed...
Excitons and related phenomena
III-V semiconductors
Spin polarized transport in s...
Elemental semiconductors
Spin transport through interf...
Magnetic semiconductors
Other inorganic compounds
Exciton-mediated interactions
1.
Chan Ching-Kit; Sham L. J.
Precision of electromagnetic control of a quantum system
2.
Wang Jing; Liu Ren-Bao; Zhu Bang-Fen; Sham L. J.; Steel D. G.
Coherent spin control by electromagnetic vacuum fluctuations
3.
Kim Erik D.; Truex Katherine; Wu Yanwen; Amo A.; Xu Xiaodong; Steel D. G.; Bracker A. S.; Gammon D.; Sham L. J.
Picosecond optical spectroscopy of a single negatively charged self-assembled InAs quantum dot
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4.
Castelano L. K.; Sham L. J.
Proposal for efficient generation of spin-polarized current in silicon
5.
Kim Erik D.; Truex Katherine; Xu Xiaodong; Sun Bo; Steel D. G.; Bracker A. S.; Gammon D.; Sham L. J.
Fast Spin Rotations by Optically Controlled Geometric Phases in a Charge-Tunable InAs Quantum Dot
6.
Rontani Massimo; Sham L. J.
Josephson oscillations between exciton condensates in electrostatic traps
7.
Erementchouk Mikhail; Leuenberger Michael N.; Sham L. J.
Nonperturbative phenomena in semiconductor four-wave mixing spectra
8.
Saikin S. K.; Steel D. G.; Emary C.; Sham L. J.
Adiabatic optical entanglement between electron spins in separate quantum dots
9.
Xu Xiaodong; Sun Bo; Kim Erik D.; Smirl Katherine; Berman P. R.; Steel D. G.; Bracker A. S.; Gammon D.; Sham L. J.
Single Charged Quantum Dot in a Strong Optical Field: Absorption, Gain, and the ac-Stark Effect
10.
Wang J.; Cywiński Ł.; Sun C.; Kono J.; Munekata H.; Sham L. J.
Femtosecond demagnetization and hot-hole relaxation in ferromagnetic Ga1-x;MnxAs
11.
Cheng Jun; Gammon D.; Yao Wang; Xu Xiaodong; Steel D. G.; Bracker A. S.; Sham L. J.
Stimulated Raman spin coherence and spin-flip induced hole burning in charged GaAs quantum dots
12.
Many-body interaction in semiconductors probed with two-dimensional Fourier spectroscopy
13.
Wu Yanwen; Economou Sophia E.; Gammon D.; Bracker A. S.; Steel D. G.; Cheng Jun; Xu Xiaodong; Kim Erik D.; Sham L. J.
Selective Optical Control of Electron Spin Coherence in Singly Charged GaAs-Al0.3Ga0.7As Quantum Dots
14.
Xu Xiaodong; Emary C.; Gammon D.; Bracker A. S.; Steel D. G.; Cheng Jun; Huang Qiong; Sun Bo; Wu Yanwen; Sham L. J.
Fast Spin State Initialization in a Singly Charged InAs-GaAs Quantum Dot by Optical Cooling
15.
Shen Yaoming; Pang Lin; Fainman Y.; Griswold Martin; Yang Sen; Butov L. V.; Sham L. J.
Photoluminescence spectral switching of single CdSe/;ZnS colloidal nanocrystals in poly(methyl methacrylate)
16.
Cywiński Łukasz; Sham L. J.
Ultrafast demagnetization in the sp-d model: A theoretical study
17.
Yao Wang; Liu Ren-Bao; Sham L. J.
Optically manipulating spins in semiconductor quantum dots
18.
Liu R.-B.; Economou S. E.; Sham L. J.; Steel D. G.
Theory on measuring electron spin decoherence times by nonlinear optical spectroscopy of quantum dots
19.
Emary C.; Sham L. J.
Optically controlled logic gates for two spin qubits in vertically coupled quantum dots
20.
Saikin S. K.; Yao Wang; Sham L. J.
Single-electron spin decoherence by nuclear spin bath: Linked-cluster expansion approach
21.
Restoring Coherence Lost to a Slow Interacting Mesoscopic Spin Bath
22.
Liu Ren-Bao; Sham L. J.; Economou S. E.; Steel D. G.
Theory of nonlinear optical spectroscopy of electron spin coherence in quantum dots
23.
Emary C.; Xu Xiaodong; Steel D. G.; Saikin S.; Sham L. J.
Fast Initialization of the Spin State of an Electron in a Quantum Dot in the Voigt Configuration
24.
Dery H.; Sham L. J.
Spin Extraction Theory and Its Relevance to Spintronics
25.
Economou Sophia E.; Sham L. J.; Wu Yanwen; Steel D. G.
Proposal for optical U(1) rotations of electron spin trapped in a quantum dot
26.
Theory of electron spin decoherence by interacting nuclear spins in a quantum dot
27.
Wu L.-A.; Sarandy M. S.; Lidar D. A.; Sham L. J.
Linking entanglement and quantum phase transitions via density-functional theory
28.
Gurudev Dutt M. V.; Cheng Jun; Wu Yanwen; Xu Xiaodong; Steel D. G.; Bracker A. S.; Gammon D.; Economou Sophia E.; Liu Ren-Bao; Sham L. J.
Ultrafast optical control of electron spin coherence in charged GaAs quantum dots
29.
Dery H.; Cywiński Ł.; Sham L. J.
Spintronics for electrical measurement of light polarization
30.
Cywiński Ł.; Dery H.; Sham L. J.
Electric readout of magnetization dynamics in a ferromagnet-semiconductor system
31.
Spin transference and magnetoresistance amplification in a transistor
32.
Lateral diffusive spin transport in layered structures
33.
Wang J.; Sun C.; Cywiński Ł.; Munekata H.; Oiwa A.; Kono J.; Sham L. J.
Ultrafast Quenching of Ferromagnetism in InMnAs Induced by Intense Laser Irradiation
34.
Liu Ren-Bao; Yao Wang; Sham L. J.
Coherent control of cavity quantum electrodynamics for quantum nondemolition measurements and ultrafast cooling
35.
Theory of Control of the Spin-Photon Interface for Quantum Networks
36.
Dutt M. V. Gurudev; Wu Yanwen; Li Xiaoqin; Steel D. G.; Gammon D.; Sham L. J.
Semiconductor Quantum Dots for Quantum Information Processing: An Optical Approach
37.
Ramon G.; Reinecke T. L.; Lyanda-Geller Y.; Sham L. J.
Indirect spin coupling between quantum dots
38.
Dutt M. V. Gurudev; Cheng Jun; Li Bo; Xu Xiaodong; Li Xiaoqin; Berman P. R.; Steel D. G.; Bracker A. S.; Gammon D.; Economou Sophia E.; Liu Ren-Bao; Sham L. J.
Stimulated and Spontaneous Optical Generation of Electron Spin Coherence in Charged GaAs Quantum Dots
39.
Economou Sophia E.; Liu Ren-Bao; Sham L. J.; Steel D. G.
Unified theory of consequences of spontaneous emission in a Λ; system
40.
Coherent Transport in a Homojunction between an Excitonic Insulator and Semimetal
41.
Ramon G.; Lyanda-Geller Y.; Reinecke T. L.; Sham L. J.
Indirect coupling between spins in semiconductor quantum dots
42.
Li Xiaoqin; Wu Yanwen; Steel D. G.; Gammon D.; Sham L. J.
Raman coherence beats from the entangled state involving polarized excitons in single quantum dots
43.
Fernández-Rossier J.; Piermarocchi C.; Chen P.; MacDonald A. H.; Sham L. J.
Coherently Photoinduced Ferromagnetism in Diluted Magnetic Semiconductors
44.
Li Xiaoqin; Steel Duncan; Gammon Daniel; Sham Lu J.
Quantum Information Processing Based On Optically Driven Semiconductor Quantum Dots
45.
Stephens J.; Gossard A. C.; Sham L. J.; McGuire J. P.; Berezovsky J.; Awschalom D. D.
Spin Accumulation in Forward-Biased MnAs/GaAs Schottky Diodes
46.
McGuire J. P.; Ciuti C.; Sham L. J.
Silicon inversion layer with a ferromagnetic gate: A novel spin source (invited)
47.
Yao Wang; Liu Renbao; Sham L. J.
Nanodot-Cavity Electrodynamics and Photon Entanglement
48.
Theory of spin transport induced by ferromagnetic proximity on a two-dimensional electron gas
49.
Chen Pochung; Gammon D.; Sham L. J.; Piermarocchi C.; Steel D. G.
Theory of quantum optical control of a single spin in a quantum dot
50.
Schäfer Wilfried; Wegener Martin; Sham L. J.
Semiconductor Optics and Transport Phenomena
51.
Ciuti C.; McGuire J. P.; Sham L. J.
Spin-dependent properties of a two-dimensional electron gas with ferromagnetic gates
52.
Piermarocchi C.; Chen Pochung; Sham L. J.; Steel D. G.
Optical RKKY Interaction between Charged Semiconductor Quantum Dots
53.
Spin Polarization of Semiconductor Carriers by Reflection off a Ferromagnet
54.
Fernández-Rossier J.; Sham L. J.
Spin separation in digital ferromagnetic heterostructures
55.
Chen Gang; Stievater T. H.; Batteh E. T.; Li Xiaoqin; Steel D. G.; Gammon D.; Katzer D. S.; Park D.; Sham L. J.
Biexciton Quantum Coherence in a Single Quantum Dot
56.
Piermarocchi C.; Chen Pochung; Dale Y. S.; Sham L. J.
Theory of fast quantum control of exciton dynamics in semiconductor quantum dots
57.
Theory of ferromagnetism in planar heterostructures of (Mn,III)-V semiconductors
58.
Stievater T. H.; Li Xiaoqin; Steel D. G.; Gammon D.; Katzer D. S.; Park D.; Piermarocchi C.; Sham L. J.
Rabi Oscillations of Excitons in Single Quantum Dots
59.
Pearson D. A.; Sham L. J.
Theory of ballistic electron emission microscopy
60.
Chen Pochung; Piermarocchi C.; Sham L. J.
Control of Exciton Dynamics in Nanodots for Quantum Operations
61.
Axt V. M.; Bolton S. R.; Sham L. J.; Neukirch U.; Chemla D. S.
Evidence of six-particle Coulomb correlations in six-wave-mixing signals from a semiconductor quantum well
62.
Thermoelectric properties of junctions between metal and strongly correlated semiconductor
63.
Bolton S. R.; Chemla D. S.; Sham L. J.; Neukirch U.; Axt V. M.
Demonstration of Sixth-Order Coulomb Correlations in a Semiconductor Single Quantum Well
64.
Theory of ballistic electron emission microscopy with constant current feedback
65.
Neukirch U.; Bolton S. R.; Sham L. J.; Chemla D. S.
Electronic four-particle correlations in semiconductors: Renormalization of coherent pump-probe oscillations
66.
Neukirch U.; Bolton S. R.; Fromer N. A.; Sham L. J.; Chemla D. S.
Polariton-Biexciton Transitions in a Semiconductor Microcavity
67.
Östreich Th.; Sham L. J.
Collective Oscillations Driven by Correlation in the Nonlinear Optical Regime
68.
Bechstedt F.; Fiedler M.; Sham L. J.
Excitonic effects in linear and nonlinear optical properties of C60
69.
Östreich Th.; Schönhammer K.; Sham L. J.
Theory of exciton-exciton correlation in nonlinear optical response
70.
Yu Peter Y.; Cardona Manuel; Sham Lu. J.
Fundamentals of Semiconductors: Physics and Materials Properties
71.
Duan Ji-Min; Arovas Daniel P.; Sham L. J.
Kondo Insulator: p-wave Bose Condensate of Excitons
72.
Anderberg J. M.; Schultz S.; Vier D. C.; Einevoll G. T.; Sham L. J.
Probing the Schottky barrier with conduction electron spin resonance
73.
Portengen T.; Östreich Th.; Sham L. J.
Theory of electronic ferroelectricity
74.
Linear and nonlinear optical characteristics of the Falicov‐Kimball model
75.
Theory of spin beatings in the Faraday rotation of semiconductors
76.
Exciton‐exciton correlation in the nonlinear optical regime
77.
Maialle M. Z.; Sham L. J.
Interacting electron theory of coherent nonlinear response
78.
Vinattieri A.; Shah Jagdeep; Damen T. C.; Kim D. S.; Pfeiffer L. N.; Maialle M. Z.; Sham L. J.
Exciton dynamics in GaAs quantum wells under resonant excitation
79.
Lazzouni M. E.; Sham L. J.
Erratum: Theory of zone‐folded optical transitions in semiconductor superlattices [Appl. Phys. Lett. ;63, 3253 (1993)]
80.
Vinattieri A.; Shah Jagdeep; Damen Theodore C.; Pfeiffer Loren N.; Sham Lu J.; Maialle M. Z.
Radiative recombination and spin-relaxation dynamics of excitons in GaAs quantum wells
81.
Steiner M. M.; Albers R. C.; Sham L. J.
First‐principles calculations of the specific‐heat mass enhancements in UIr;3, UPt3, and UAu3
82.
Einevoll G. T.; Sham L. J.
Boundary conditions for envelope functions at interfaces between dissimilar materials
83.
Godby R. W.; Sham L. J.
Exchange‐correlation potentials at semiconductor interfaces
84.
Sham Lu J.
IUPAP Sponsors Only International Meetings
85.
Theory of zone‐folded optical transitions in semiconductor superlattices
86.
Vinattieri A.; Pfeiffer L. N.; Shah Jagdeep; Damen T. C.; Goossen K. W.; Maialle M. Z.; Sham L. J.
Electric field dependence of exciton spin relaxation in GaAs/AlGaAs quantum wells
87.
Theory of the electronic properties of δ‐doped layers with ;DX centers in semiconductor heterostructures
88.
Lazzouni M. E.; Einevoll G. T.; Sham L. J.
Optimization of charge transfer to the active channel in δ‐doped heterostructures
89.
Fernández J. M.; Lazzouni M. E.; Sham L. J.; Wieder H. H.
Electron distribution in pseudomorphic Al0.30Ga0.70As/ In0.15Ga0.85As/GaAs δ‐doped heterostructures
90.
Maialle M. Z.; de Andrada e Silva E. A.; Sham L. J.
Exciton spin dynamics in quantum wells
91.
Damen Theodore C.; Vina Luis; Leo Karl; Cunningham John E.; Shah Jagdeep; Sham Lu J.
Spin relaxation dynamics of excitons and free carriers in quasi-two-dimensional GaAlAs/GaAs structures
92.
Tailoring infrared optical properties with superlattices of superlattices
93.
Quasiparticle properties of Fe, Co, and Ni
94.
McIntyre C. R.; Sham L. J.
Theory of luminescence polarization anisotropy in quantum wires
95.
Monnier R.; Steiner M. M.; Sham L. J.
Absence of spin polarization in the thermocurrent emitted by a cesiated ferromagnetic iron surface
96.
Damen T. C.; Via Luis; Cunningham J. E.; Shah Jagdeep; Sham L. J.
Subpicosecond spin relaxation dynamics of excitons and free carriers in GaAs quantum wells
97.
Sham L. J.
Infrared optical properties of lateral superlattices on vicinal planes
98.
Steiner M. M.; Albers R. C.; Scalapino D. J.; Sham L. J.
Perturbation theory of the electronic properties in strongly correlated solids
99.
Godby R. W.; Sham L. J.; Schlüter M.
Exchange‐correlation potentials in Schottky barriers and heterojunctions
100.
Uenoyama T.; Sham L. J.
Carrier relaxation and luminescence polarization in quantum wells
101.
Effect of finite hole mass on edge singularities in optical spectra
102.
Hole relaxation and luminescence polarization in doped and undoped quantum wells
103.
Brozak G.; Florez L. T.; Harbison J. P.; Schwarz S. A.; Miceli P.; DeRosa F.; Sham L. J.; de Andrada e Silva E. A.; Allen S. J.
Tunneling cyclotron resonance and the renormalized effective mass in semiconductor barriers
104.
Lu Yan-Ten; Sham L. J.
Valley‐mixing effects in short‐period superlattices
105.
Many‐body theory of magneto‐optical spectra in doped quantum wells
106.
Hanke W.; Sham L. J.
Density‐functional theory in insulators; Analytical model for ;Σ;xc, vxc, and the gap correction
107.
Lamari Saadi; Sham L. J.
Theory of magnetooptical properties in quantum wells of narrow‐gap semiconductors
108.
Coffey Dermot; Sham L. J.; Lin-Liu Y. R.
Inhomogeneous excited states in superconductors
109.
Godby R. W.; Schlüter M.; Sham L. J.
Self‐energy operators and exchange‐correlation potentials in semiconductors
110.
Sham L. J.; Schlüter M.
Comment on ‘‘Density‐functional treatment of an exactly solvable semiconductor model’’
111.
Grabowski M.; Sham L. J.
Erratum: Superconductivity from nonphonon interactions [Phys. Rev. B ;29, 6132 (1984)]
112.
Trends in self‐energy operators and their corresponding exchange‐correlation potentials
113.
Sheeburne E. G.; Sham Lu J.; Wilson Jack M.
Physics Olympiad
114.
Yang S. -R. Eric; Sham L. J.
Theory of magnetoexcitons in quantum wells
115.
Sooryakumar R.; Chemla D. S.; Gossard A. C.; Pinczuk A.; Sham L. J.
Tuning of the valence‐band structure of GaAs quantum wells by uniaxial stress
116.
Quasiparticle energies in GaAs and AlAs
117.
Broido D. A.; Sham L. J.
Valence‐band coupling and Fano‐resonance effects on the excitonic spectrum in undoped quantum wells
118.
Accurate exchange‐correlation potential for silicon and its discontinuity on addition of an electron
119.
Eric Yang S.-R.; Broido D. A.; Sham L. J.
Holes at GaAs‐Al;xGa1-;xAs heterojunctions in magnetic fields
120.
Lin-Liu Y. R.; Sham L. J.
Interface states and subbands in HgTe‐CdTe heterostructures
121.
Lannoo M.; Schlüter M.; Sham L. J.
Calculation of the Kohn‐Sham potential and its discontinuity for a model‐semiconductor
122.
Density‐functional theory of the band gap
123.
Exchange and correlation in density‐functional theory
124.
Erratum: Effective masses of holes at GaAs-AlGaAs heterojunctions [Phys. Rev. B ;31, 888 (1985)]
125.
del CastilloMussot M.; Sham L. J.
Excitonic effect in the optical spectrum of semiconductors
126.
Effective masses of holes at GaAs‐AlGaAs heterojunctions
127.
Pinkerton F. E.; Webb B. C.; Sievers A. J.; Wilkins J. W.; Sham L. J.
Enhanced far‐infrared absorption in CePd;3 and YbCu2Si2. III. Comparison of a resonant‐scattering model with experiment
128.
Sham L. J.; Wilkins J. W.
Enhanced far‐infrared absorption in CePd;3 and YbCu2Si2. II. Infrared‐active optic phonons in metals
129.
Sooryakumar R.; Chemla D. S.; Pinczuk A.; Gossard A.; Weigmann W.; Sham L. J.
Summary Abstract: Direct observation of band mixing in GaAs–(Al;xGa1-;x)As quantum heterostructures
130.
Superconductivity from nonphonon interactions
131.
Density‐functional theory of the energy gap
132.
Rietschel H.; Sham L. J.
Role of electron Coulomb interaction in superconductivity
133.
Gummich Ute; Sham L. J.
Valley phase transition of Si inversion layer in high magnetic fields
134.
White S. R.; Margues G. E.; Sham L. J.
Effective‐mass theory for electrons in heterostructures
135.
Schlüter Michael; Sham Lu Jeu
Density functional theory
136.
Mahan G. D.; Abe R.; Toyozawa Y.; Nakajima S.; Sham Lu Jeu
Many‐Particle Physics; and The Physics of Elementary Excitations
137.
White S. R.; Sham L. J.
Electronic properties of flat‐band semiconductor heterostructures
138.
Sparks M.; Mills D. L.; Warren R.; Holstein T.; Maradudin A. A.; Sham L. J.; Loh E.; King D. F.
Theory of electron‐avalanche breakdown in solids
139.
Many‐particle effects in the optical spectrum of a semiconductor
140.
Bloss W. L.; Sham L. J.; Vinter B.
Interaction‐induced transition at low densities in silicon inversion layer
141.
Many‐particle effects in the optical excitations of a semiconductor
142.
Sham L. J.; Nakayama M.
Effective‐mass approximation in the presence of an interface
143.
Sham L. J.; Allen S. J.; Kamgar A.; Tsui D. C.
Valley‐valley splitting in inversion layers on a high‐index surface of silicon
144.
Dahl David A.; Sham L. J.
Electrodynamics of quasi‐two‐dimensional electrons
145.
Moncton D. E.; DiSalvo F. J.; Axe J. D.; Sham L. J.; Patton Bruce R.
Charge‐density wave stacking order in 1;T‐Ta;1‐;xZrxSe2; Interlayer interactions and impurity (Zr) effects
146.
Sham L. J.; Patton Bruce R.
Effect of impurity on a Peierls transition
147.
Theory of structural variation in a quasi‐one‐dimensional conductor
148.
Local‐field and excitonic effects in the optical spectrum of a covalent crystal
149.
Microscopic theory of the driving force in electromigration
150.
Patton Bruce R.; Sham L. J.
Fluctuation Conductivity in the Incommensurate Peierls System
151.
Dielectric Response in the Wannier Representation: Application to the Optical Spectrum of Diamond
152.
Sham L. J.; Sparks M.
Explicit exponential frequency dependence of multiphonon infrared absorption
153.
Sander Leonard M.; Shore Herbert B.; Sham L. J.
Surface Structure of Electron-Hole Droplets
154.
Sparks M.; Sham L. J.
Theory of Multiphonon Absorption in Insulating Crystals
155.
Noolandi J.; Sham L. J.
Theory of Structural Phase Transition in Nb3Sn
156.
Temperature Dependence of Multiphonon Infrared Absorption
157.
Conductivity, Superconductivity, and the Peierls Instability
158.
159.
Exchange and Correlation in the Electron Gas
160.
Theory of Lattice Dynamics of Nb3 Sn-Type Compounds
161.
Microscopic Theory of Lattice Dynamics in Conducting Crystals
162.
Cohesive Force in Metals
163.
Lattice Dynamics of Nb3Sn-Type Compounds
164.
Sham L. J.; Smith T. F.
Thermodynamics of Pressure Effects in V3Si and V3Ge
165.
Rice T. M.; Sham L. J.
Ultrasonic Attenuation Due to Electron-Phonon Interaction in Potassium
166.
167.
Local Exchange Approximations and the Virial Theorem
21
Steel, Duncan G.
13
Gammon, Daniel
10
Liu, Ren-Bao
9
Xu, Xiaodong
8
Bracker, Allan S.
7
Cywiński, Łukasz
Economou, Sophia E.
Yao, Wang
Wu, Yanwen
6
Piermarocchi, Carlo
5
Cheng, Jun
Chemla, Daniel S.
Shah, Jagdeep
Dery, H
Chen, Pochung