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Original Articles

The sputtering processes of alkali halides during 6 keV Xe+ ion bombardment

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Pages 205-210 | Received 22 Feb 1978, Published online: 13 Sep 2006

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Z. Postawa. (1994) Desorption of alkali halides stimulated by ion bombardment. Radiation Effects and Defects in Solids 128:1-2, pages 107-125.
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DonE. Harrison$suffix/text()$suffix/text(). (1988) Application of molecular dynamics simulations to the study of ion-bombarded metal surfaces. Critical Reviews in Solid State and Materials Sciences 14:sup1, pages s1-s78.
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J.E. Greene. (1983) Epitaxial crystal growth by sputter deposition: Applications to semiconductors. Part 2. Critical Reviews in Solid State and Materials Sciences 11:3, pages 189-227.
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JosephE. Greene. (1983) Epitaxial crystal growth by sputter deposition: Applications to semiconductors. Part I. Critical Reviews in Solid State and Materials Sciences 11:1, pages 47-97.
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D.A. Thompson. (1981) High density cascade effects. Radiation Effects 56:3-4, pages 105-150.
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M. Szymoáski & A.E. De Vries. (1981) Beam induced decomposition and sputtering of LiI. Radiation Effects 54:3-4, pages 135-139.
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R.E. Johnson & R. Evatt. (1980) Thermal spikes and sputtering yields. Radiation Effects 52:3-4, pages 187-190.
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J.B. Sanders. (1980) Time evolution of collision-induced hot spikes. Radiation Effects 51:1-2, pages 43-48.
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R. Bruckmüller, W. Husinsky & P. Blum. (1980) Influence of thermal and collisional effects on the sputtering of sodium and samarium targets. Radiation Effects 45:3-4, pages 199-204.
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Articles from other publishers (35)

Hubert Gnaser. 2007. Sputtering by Particle Bombardment. Sputtering by Particle Bombardment 231 328 .
Rolf Kissel & Herbert M. Urbassek. (2001) Sputtering from spherical Au clusters by energetic atom bombardment. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 180:1-4, pages 293-298.
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Holger Jenett, Xingtao Ai, Vasile-Dan Hodoroaba, Ione Iga & Lee Mu Tao. (1999) Low-energy BO and BO2 emission from H2BO3 sputtered in a low-pressure high-frequency SNMS plasma. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 155:1-2, pages 13-24.
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Holger Jenett. 1997. Analytiker-Taschenbuch. Analytiker-Taschenbuch 43 117 .
Gerhard Betz & Karl Wien. (1994) Energy and angular distributions of sputtered particles. International Journal of Mass Spectrometry and Ion Processes 140:1, pages 1-110.
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U. C. Schmidt, M. Fichtner, J. Goschnick, M. Lipp & H. J. Ache. (1991) Analysis of ionic solids with SNMS. Fresenius' Journal of Analytical Chemistry 341:3-4, pages 260-264.
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N. M. Reed & J. C. Vickerman. 1991. Fundamental Aspects of Heterogeneous Catalysis Studied by Particle Beams. Fundamental Aspects of Heterogeneous Catalysis Studied by Particle Beams 357 392 .
M. Szymonski, P. Czuba, T. Dohnalik, L. Jozefowski, A. Karawajczyk, J. Kolodziej, R. Lesniak & Z. Postawa. (1990) A comparison of ion- and electron-induced sputtering of single-crystal alkali halides. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 48:1-4, pages 534-537.
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Roger Kelly. (1990) Thermal sputtering as a gas-dynamic process. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 46:1-4, pages 441-447.
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Marek Szymonski. (1990) Current views on electronic and cascade sputtering of alkali halides. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 46:1-4, pages 427-434.
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D. J. Oostra, R. P. van Ingen, A. Haring, A. E. de Vries & F. W. Saris. (1988) Time-of-Flight Measurements of Nonlinear Effects in Sputtering by Dimer Ions. Physical Review Letters 61:12, pages 1392-1395.
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P. C. Zalm. (1988) Quantitative sputtering. Surface and Interface Analysis 11:1-2, pages 1-24.
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Jørgen Schou. (1987) Sputtering of frozen gases. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 27:1, pages 188-200.
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J.W. Boring, D.J. O'Shaughnessy & J.A. Phipps. (1986) Mechanisms for the sputtering of rare gas solids by keV ions. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 18:1-6, pages 613-617.
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G.J.Q. van der Peyl, W.J. van der Zande, R. Hoogerbrugge & P.G. Kistemaker. (1985) Kinetic energy distributions of organic ions sputtered from solids and liquids. International Journal of Mass Spectrometry and Ion Processes 67:2, pages 147-159.
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B. Schueler, R. Beavis, W. Ens, D.E. Main & K.G. Standing. (1985) Secondary ion mass spectra of alkali halides. Surface Science 160:2, pages 571-586.
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W. Heiland & E. Taglauer. 1985. Solid State Physics: Surfaces. Solid State Physics: Surfaces 299 348 .
C.T. Reimann, J.W. Boring, R.E. Johnson, J.W. Garrett, K.R. Farmer, W.L. Brown, K.J. Marcantonio & W.M. Augustyniak. (1984) Ion-induced molecular ejection from D2O ice. Surface Science 147:1, pages 227-240.
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R.A. Haring, R. Pedrys, A. Haring & A.E. De Vries. (1984) Sputtering of condensed noble gases by keV heavy ions. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 4:1, pages 40-54.
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M.P. Seah. (1984) A review of the analysis of surfaces and thin films by AES and XPS. Vacuum 34:3-4, pages 463-478.
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W.L. Brown, W.M. Augustyniak, K.J. Marcantonio, E.H. Simmons, J.W. Boring, R.E. Johnson & C.T. Reimann. (1984) Electronic sputtering of low temperature molecular solids. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 1:2-3, pages 307-314.
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Joshua E. Rothenberg & Roger Kelly. (1984) Laser sputtering. Part II. The mechanism of the sputtering of Al2O3. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 1:2-3, pages 291-300.
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Jean -Claude Pivin. (1983) An overview of ion sputtering physics and practical implications. Journal of Materials Science 18:5, pages 1267-1290.
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M. Szymoński & A. E. de Vries. 1983. Desorption Induced by Electronic Transitions DIET I. Desorption Induced by Electronic Transitions DIET I 216 219 .
Gerhard Betz & Gottfried K. Wehner. 1983. Sputtering by Particle Bombardment II. Sputtering by Particle Bombardment II 11 90 .
Rainer Behrisch. 1983. Sputtering by Particle Bombardment II. Sputtering by Particle Bombardment II 1 10 .
O. Becker. (1982) An improved time-of-flight method to measure energy spectra of secondary ions desorbed by fission fragments. Nuclear Instruments and Methods in Physics Research 198:1, pages 53-57.
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Marek Szymoński. (1982) Sputtering mechanisms of compound solids. Nuclear Instruments and Methods in Physics Research 194:1-3, pages 523-531.
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Z.L. Kerestes, J.C. Kelly, R.L. Dalglish, R.J. Macdonald, A.R. Bayly & P.J. Martin. (1981) Sputtering of ionic clusters from KCl, NaCl and LiF. Nuclear Instruments and Methods in Physics Research 191:1-3, pages 259-267.
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Ming L. Yu, D. Grischkowsky & A. C. Balant. (1981) Measurement of the velocity distribution of sputtered Na atoms from NaCl by Doppler shift laser fluorescence. Applied Physics Letters 39:9, pages 703-705.
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Roger Kelly. (1981) Phase changes in insulators produced by particle bombardment. Nuclear Instruments and Methods 182-183, pages 351-378.
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A.R. Krauss & R.B. Wright. (1980) Energy and mass distributions of sputtered particles. Journal of Nuclear Materials 89:2-3, pages 229-252.
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W. Husinsky, R. Bruckmüller & P. Blum. (1980) Velocity measurements of sputtered particles using the Laser-Doppler method. Nuclear Instruments and Methods 170:1-3, pages 287-293.
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Roger Kelly. (1979) Thermal effects in sputtering. Surface Science 90:2, pages 280-318.
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M. W. THOMPSON. (1979) Mechanisms of sputtering. Nature 277:5694, pages 326-327.
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