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Atomic, molecular, and ion be...
Charge transfer
Chemisorption/physisorption: ...
Electronic excitation and ion...
Other topics in electron and ...
Structure of clean surfaces
Interactions of atoms and mol...
Electron stimulated desorption
Adsorption kinetics
Time of flight mass spectrome...
Surface and interface dynamic...
Solid surfaces and solid-soli...
Diffusive momentum transport
Mass spectrometry
Surface and interface chemist...
Phonon states and bands, norm...
Liquids
Thin film structure and morph...
Collective excitations
Liquid-liquid transitions
1.
Souda Ryutaro
Adsorption, diffusion, dewetting, and entrapment of acetone on Ni(111), surface-modified silicon, and amorphous solid water studied by time-of-flight secondary ion mass spectrometry and temperature programmed desorption
2.
Translational diffusion of cumene and 3-methylpentane on free surfaces and pore walls studied by time-of-flight secondary ion mass spectrometry
3.
Glass transition and crystallization dynamics of thin CCl2F2 films deposited on Ni(111), graphite, and water-ice films
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4.
Comparative study of electron stimulated positive-ion desorption from LiCl and 1-ethyl-3-methylimidazolium bis[trifluoromethylsulfonyl]imide
5.
Matrix effects on secondary ion emission from a room-temperature ionic liquid, 1-ethyl-3-methylimidazolium bis[trifluoromethanesulfonyl]imide
6.
The glass-liquid transition of water on hydrophobic surfaces
7.
Souda Ryutaro; Günster Jens
Temperature-programed time-of-flight secondary ion mass spectrometry study of 1-butyl-3-methylimidazolium trifluoromethanesulfonate during glass-liquid transition, crystallization, melting, and solvation
8.
Interaction of water with LiCl, LiBr, and LiI in the deeply supercooled region
9.
Effects of methanol on crystallization of water in the deeply supercooled region
10.
Liquid-liquid transition in supercooled water investigated by interaction with LiCl and Xe
11.
Time-of-flight secondary ion mass spectroscopy analysis of Na adatoms interacting with water-ice film
12.
Interaction of alkanes with an amorphous methanol film at 15–180 ;K
13.
A temperature-programed time-of-flight secondary ion mass spectroscopy study of intermixing of amorphous ethanol and heavy-water films at 15–200 K
14.
Kawanowa Hitoshi; Ozawa Hidenori; Gotoh Yoshihiko; Souda Ryutaro
Structural Analysis of LiTaO3(0001) Surfaces Using Low-Energy Neutral Scattering Spectroscopy
15.
Günster Jens; Souda Ryutaro
Water condensation on a Hydrophobic Surface: A structural self-trapping system
16.
Glass Transition and Intermixing of Amorphous Water and Methanol
17.
Hydrophobic hydration of alkanes: Its implication for the property of amorphous solid water
18.
Kondo M.; Kawanowa H.; Gotoh Y.; Souda R.
Ionization and solvation of HCl adsorbed on the D2O-ice surface
19.
Hydration of polar and nonpolar molecules at the surface of amorphous solid water
20.
Souda R.; Kondo M.; Kawanowa H.; Gotoh Y.
Interactions of D2O with methane and fluoromethane surfaces
21.
Yamaguchi Kimiaki; Tomioka Hiroyuki; Sato Tomonari; Souda Ryutaro; Suemasu Takashi; Hasegawa Fumio
Influence of AlN Growth Conditions on the Polarity of GaN Grown on AlN/Si(111) by Metalorganic Molecular Beam Epitaxy
22.
Souda R.; Kawanowa H.; Kondo M.; Gotoh Y.
Hydrogen bonding between water and methanol studied by temperature-programmed time-of-flight secondary ion mass spectrometry
23.
Temperature-programmed time of flight secondary ion mass spectrometry study of hydration of ammonia and formic acid adsorbed on the water–ice surface
24.
Deng Z.-W.; Souda R.
Hyperthermal rare-gas ion-stimulated CN-; desorption from a nitrogenated graphite surface
25.
Electron-stimulated desorption of positive ions from Na nanoclusters adsorbed on Pt(111) and Ar, H2O, and SF6 spacer layers
26.
Guo Hansheng; Souda R.
Morphology of KI Adsorbates on Si(111) and Si(100) Surfaces
27.
Kawanowa Hitoshi; Ozawa Hidenori; Yazaki Takashige; Gotoh Yoshihiko; Souda Ryutaro
Structure Analysis of Monolayer Graphite on Ni(111) Surface by Li;+;‐Impact Collision Ion Scattering Spectroscopy
28.
Eley–Rideal abstraction of carbon from graphite by hyperthermal ;N+ ions
29.
Electron stimulated solvation and reaction of water, ammonia, and methane in nanoclusters adsorbed on solid Ar substrate
30.
Electron-stimulated desorption of cations from dielectric matters: NaCl and H2O nanoclusters adsorbed on a solid Ar substrate
31.
Electron-stimulated desorption of positive ions from methane and fluoromethane nanoclusters
32.
Dynamics of CN-; ion emission during hyperthermal N2+ ion irradiation of graphite
33.
Deng Z. W.; Souda R.
Dissociative electron attachment to C2N2 molecules at surface and in gas phase
34.
Hasegawa Fumio; Namerikawa Makoto; Takahashi Osamu; Sato Tomonari; Souda Ryutaro
Ga Polarity Preference in Halide Vapor Phase Epitaxy of GaN on a GaAs (111)B; As Polar Substrate
35.
Souda Ryutaro; Kato Masahiko
Neutralization and negative ion conversion of low-energy proton scattered from Ar, Kr, and Xe condensed on the Pt(111) surface
36.
Mechanisms of atomic and molecular ion emission during sputtering of condensed CF4 molecules on Pt(111) by He+ and Ar+ ion bombardment
37.
Ion-surface charge exchange during sputtering and low-energy H+ scattering from Ar, Kr, and Xe layers formed on metal surfaces
38.
Electron and ion stimulated desorption of positive ions from SF6 adsorbed on a Ta surface
39.
Secondary ion emission from Ar, Kr, Xe, N2,O2, CO, and SF6 adsorbed on Pt(111): Relation between neutralization of sputtered ions and bond nature of adsorbates
40.
Günster J.; Heinrich J. G.; Dieckhoff S.; van Eys-Schäfer H.; Otani S.; Souda R.
Well-defined nanostructure nucleation sites provided by the faceted TiC(111) surface
41.
Suzuki T.; Souda R.; Maus-Friedrichs W.; Kempter V.
TiO(001) single-crystal film formation by the incorporation of oxygen from MgO into the deposited Ti film
42.
Asari E.; Suzuki T.; Kawanowa H.; Ahn J.; Hayami W.; Aizawa T.; Souda R.
TiO2(110)-p(1×1); surface structure analyzed by impact-collision ion-scattering spectroscopy
43.
Kido Yoshiaki; Nishimura Tomoaki; Hoshino Yasushi; Otani Shigeki; Souda Ryutaro
Rumpled relaxation of TiC(001) and TaC(001) determined by high-resolution medium-energy ion scattering spectroscopy
44.
Souda R.; Kawanowa H.; Otani S.; Aizawa T.
Ion-stimulated desorption of O+ from the oxygenated TiC(111) surface: The role of nonadiabatic electronic transitions and the band effect
45.
Yamamoto Kazuo; Kobayashi Kazuaki; Kawanowa Hitoshi; Souda Ryutaro
Difference in the outermost layer between TaB2(0001) and HfB2(0001)
46.
Resonant ion stimulated desorption of O+ and H+: A probe of interactions of oxygen and hydrogen with TiO2(110)
47.
Neutralization of O+ during scattering and ion-stimulated desorption from the TiC(100) surface
48.
Souda R.; Suzuki T.; Asari E.; Kawanowa H.
Effects of potential energy on sputtering of F+ from the CaF2(111) surface by noble-gas ion bombardment
49.
Asari E.; Souda R.
Atomic structure of TiO2(110)-p(1×2); and p(1×3); surfaces studied by impact collision ion-scattering spectroscopy
50.
Resonant ion-stimulated desorption and low-energy proton-scattering study of interactions of hydrogen and oxygen with the SrTiO3(100) surface
51.
Kawanowa H.; Souda R.; Yamamoto K.; Otani S.; Gotoh Y.
Electronic structure of graphitic boron at a TaB2(0001) surface
52.
Ion Stimulated Desorption of Secondary Ions from Ionic Compound Surfaces
53.
Souda R.; Suzuki T.; Kawanowa H.; Asari E.
Low-energy reactive ion scattering as a probe of surface femtochemical reaction: H+ and H-; formation on ionic compound surfaces
54.
Souda R.; Asari E.; Kawanowa H.; Suzuki T.; Otani S.
Interactions of SrF2 and PrF3 with TiC(111) and Si(111) surfaces studied by low-energy D+ scattering spectroscopy
55.
Kawanowa H.; Souda R.; Otani S.; Gotoh Y.
Structure Analysis of a Graphitic Boron Layer at the TaB2(;0001); Surface
56.
Effect of surface defects on charge exchange of low-energy deuterium ions scattered from SrCl2 and BaF2
57.
Souda R.; Asari E.; Suzuki T.; Tanaka T.; Aizawa T.
In Situ Observation of Charge Exchange and Surface Segregation of Hydrogen during Low Energy H+ and H2 + Scattering from Semiconductor Surfaces
58.
Günster J.; Tanaka T.; Souda R.
Surface reorganization observed on YB4(001)
59.
Hwang Yeon; Souda Ryutaro; Aizawa Takashi; Hayami Wataru; Otani Shigeki; Ishizawa Yoshio
Surface Phonon of MgO Layer on TiC(100) Surface
60.
Tilley Barbara; Souda Ryutaro; Yamamoto Kazuo; Hayami Wataru; Aizawa Takashi; Otani Shigeki; Isizawa Yoshio
DV-Xα Calculations of Charge Exchange between ;D+ and TiC, TiCxO(1-x);, and SrO Surfaces during Low Energy D+ Scattering
61.
Lu Q. B.; Souda R.; O'Connor D. J.; King B. V.
Interaction of oxygen with a Cs‐monolayer‐covered Si(100) surface
62.
Lu Q. B.; O'Connor D. J.; Souda R.; King B. V.
Electronic‐Structure Modification and the Adsorption Site of Oxygen on Alkali (Cs) Covered Surfaces Studied by Normal Exit Li;-; Ion Spectroscopy
63.
Lu Q. B.; Souda R.; O'Connor D. J.; King B. V.; MacDonald R. J.
Electronic‐structure effect on core‐level excitation and charge transfer in ions scattering from alkali‐metal‐covered surfaces
64.
Souda R.; Yamamoto K.; Hayami W.; Aizawa T.; Ishizawa Y.
Band effect on inelastic rare gas collisions with solid surfaces
65.
Low‐energy H;+, He+, N+, O+, and Ne+ scattering from metal and ionic‐compound surfaces; Neutralization and electronic excitation
66.
Souda R.; Yamamoto K.; Tilley B.; Hayami W.; Aizawa T.; Ishizawa Y.
Charge exchange in low‐energy proton‐surface scattering studied by discrete variational ;Xα cluster calculations
67.
Hayami Wataru; Souda Ryutaro; Aizawa Takashi; Otani Shigeki; Ishizawa Yoshio
Structural analysis of the nitrogen‐adsorbed NbC(111) surface
68.
Bond ionicity of alkaline‐earth oxides studied by low‐energy D;+ scattering
69.
Souda R.; Hayami W.; Aizawa T.; Ishizawa Y.
Determination of bond ionicity using low‐energy D;+ scattering
70.
Chemical analysis of alkali‐metal adatoms using low‐energy D;+ scattering
71.
Analysis of the NbC(111)‐(√3 × √3 );R30°‐Al surface structure by impact‐collision ion‐scattering spectroscopy
72.
Souda R.; Hayami W.; Aizawa T.; Otani S.; Ishizawa Y.
Electronic properties of ionic insulators on metal and semiconductor surfaces: RbCl on Si(100) and W(110)
73.
Souda R.; Aizawa T.; Hayami W.; Ishizawa Y.
Alkali‐metal adsorption on the Si(100) surface studied by low‐energy D;+ scattering
74.
Potassium adsorption on metal and semiconductor surfaces studied by low‐energy D;+ scattering
75.
Interaction of alkali halides with metal and semiconductor surfaces studied by low‐energy D;+ scattering
76.
Electron emission from He+ interacting with a Cs overlayer on W(110)
77.
Souda R.; Otani S.; Aizawa T.; Hayami W.; Ishizawa Y.
Charge state of potassium on metal and semiconductor surfaces studied by low‐energy D;+ scattering
78.
Chemical effects in low‐energy D;+ scattering from oxides
79.
Aizawa T.; Souda R.; Otani S.; Ishizawa Y.; Oshima C.
Erratum: Bond softening in monolayer graphite formed on transition‐metal carbide surfaces [Phys. Rev. B ;42, 1146 (1990)]
80.
Band effects on neutralization of low‐energy D;+ scattering from ionic crystals
81.
Bond softening in monolayer graphite formed on transition‐metal carbide surfaces
82.
Souda R.; Otani S.; Hayami W.; Aizawa T.; Ishizawa Y.
Neutralization of low‐energy D;+ scattered from solid surfaces
83.
Souda R.; Aizawa T.; Ishizawa Y.; Oshima C.
Segregation of Ca ions at the MgO(001) surface studied by neutral beam incidence ion scattering spectroscopy
84.
Aizawa T.; Souda R.; Ishizawa Y.; Otani S.; Oshima C.
Anomalous bond of monolayer graphite on transition‐metal carbide surfaces
85.
Souda R.; Aizawa T.; Oshima C.; Otani S.; Ishizawa Y.
Ion neutralization mediated by a molecular state: He+ on D‐covered TiC(111)
86.
Miura K.; Souda R.; Aizawa T.; Oshima C.; Otani S.; Ishizawa Y.
Carbon vacancies at a V6C5(100) surface
87.
Electronic excitation in impact scattering of low‐energy He;+ from solid surfaces
88.
Souda R.; Aizawa T.; Oshima C.; Ishizawa Y.
Band effect on inelastic scattering of low‐energy He;+ from ionic crystals
89.
Oshima C.; Ishida H.; Ishizawa Y.; Otani S.; Souda R.; Wuttig M.; Aizawa T.; Terakura K.
Surface‐phonon dispersion curves of TiC(100)
90.
Oshima C.; Otani S.; Aono M.; Souda R.; Ishizawa Y.
Surface phonons of the superconducting materials NbC(100) and TaC(100)
91.
Aono M.; Souda R.; Oshima C.; Ishizawa Y.
Summary Abstract: Impact collision ion scattering spectroscopy using noble gas and alkali ions for surface structure analysis
92.
Oshima C.; Souda R.; Aono M.; Ishizawa Y.
Optimum angle of deflection electrodes of a cylindrical electrostatic analyzer
93.
Oshima C.; Souda R.; Aono M.; Otani S.; Ishizawa Y.
Experimental observation of microscopic optical surface phonon: TaC(100)
94.
Stable field electron emission from a tungsten tip under the ultrahigh vacuum of 10-;10 Pa
95.
Aono M.; Oshima C.; Souda R.; Ishizawa Y.
Structure analysis of the Si(111)7×7 surface by low‐energy ion scattering
96.
Aono M.; Hou Y.; Souda R.; Oshima C.; Otani S.; Ishizawa Y.
Direct analysis of the structure, concentration, and chemical activity of surface atomic vacancies by specialized low‐energy ion‐scattering spectroscopy; TiC(001)
32
Aizawa, Takashi
28
Otani, Shigeki
15
Kawanowa, Hitoshi
7
Asari, E
Suzuki, T
6
Gotoh, Y
4
Günster, Jens
3
Deng, Z.-W.
Kondo, M
O'Connor, Daryl John
2
Yamamoto, Kazuo
Ozawa, Hidenori
1
Tomioka, Hiroyuki
Heinrich, JG
Yamaguchi, Kimiaki