Atomic and ion collisions in solids and at surfaces: theory, simulation and applications
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Cambridge
Cambridge Univ. Press
1997
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Ausgabe: | 1. publ. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | IX, 309 S. Ill., graph. Darst. |
ISBN: | 052144022X |
Internformat
MARC
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245 | 1 | 0 | |a Atomic and ion collisions in solids and at surfaces |b theory, simulation and applications |c ed. by Roger Smith |
250 | |a 1. publ. | ||
264 | 1 | |a Cambridge |b Cambridge Univ. Press |c 1997 | |
300 | |a IX, 309 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
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650 | 4 | |a Collisions (Nuclear physics) | |
650 | 4 | |a Solids |x Surfaces | |
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Datensatz im Suchindex
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adam_text | ATOMIC AND ION COLLISIONS IN SOLIDS AND AT SURFACES THEORY, SIMULATION
AND APPLICATIONS EDITED BY ROGER SMITH ROGER SMITH LOUGHBOROUGH
UNIVERSITY MARIO JAKAS UNIVERSIDAD DE LA LAGUNA DAVE ASHWORTH, BOB OVEN
AND MARK BOWYER UNIVERSITY OF KENT IVAN CHAKAROV AND ROGER WEBB
UNIVERSITY OF SURREY WM CAMBRIDGE *0 UNIVERSITY PRESS CONTENTS 1
INTRODUCTION PAGE 1 2 THE BINARY COLLISION 7 2.1 FUNDAMENTALS 7 2.1.1
SCATTERING BY A CENTRAL FORCE FIELD 7 2.1.2 INELASTIC SCATTERING 10
2.1.3 THE TWO-BODY SCATTERING PROBLEM 12 2.1.4 VELOCITY COMPONENTS AND
ENERGY TRANSFER 16 2.1.5 DETERMINATION OF THE SCATTERING ANGLE AND THE
TIME INTEGRALS 18 2.1.6 CROSS-SECTIONS 23 2.1.7 POTENTIALS USED IN
BINARY COLLISION CALCULATIONS 26 2.2 APPLICATIONS 31 2.2.1 RUTHERFORD
SCATTERING 31 2.2.2 SURFACE SPECTROSCOPY USING SHADOW CONES 34 2.2.3
PROJECTILE STOPPING 36 2.3 CONCLUSION 38 3 INTERATOMIC POTENTIALS 39 3.1
GENERAL PRINCIPLES 39 3.1.1 AB INITIO POTENTIALS 41 3.2 THE REPULSIVE
WALL POTENTIAL 44 3.2.1 THE SCREENED COULOMB POTENTIAL FOR THE ISOLATED
ATOM 44 3.2.2 TWO-BODY SCREENED COULOMB POTENTIALS 46 3.3 THE ATTRACTIVE
WELL POTENTIAL 49 3.3.1 THE LENNARD-JONES POTENTIAL 50 3.3.2 THE MORSE
POTENTIAL 52 3.3.3 IONIC POTENTIALS 55 3.3.4 LATTICE SUMS FOR IONIC
POTENTIALS 58 3.3.5 MANY-BODY EMPIRICAL POTENTIALS 61 3.3.6 FITTING
PROCEDURES 61 V VI CONTENTS 3.3.7 THE FINNIS-SINCLAIR METHOD AND THE
EMBEDDED ATOM METHOD FOR METALS 62 3.3.8 COVALENT MATERIALS 66 3.4 THE
OVERLAP POTENTIAL 67 3.5 CONCLUSION 69 4 ELECTRONIC ENERGY LOSS MODELS
72 4.1 INTRODUCTION 72 4.2 ELECTRONIC STOPPING FOR LOW ENERGIES 74 4.2.1
FIRSOV S SEMI-CLASSICAL MODEL (LOCAL) 74 4.2.2 LINDHARD AND SCHARFF
ELECTRONIC STOPPING (NON-LOCAL) 79 4.2.3 OEN AND ROBINSON ELECTRONIC
STOPPING 80 4.3 Z OSCILLATIONS IN THE ELECTRONIC STOPPING 81 4.4 Z2
OSCILLATIONS IN THE ELECTRONIC STOPPING 84 4.5 ELECTRONIC STOPPING FOR
HIGH-ENERGY IONS 86 4.6 ION-ELECTRON INTERACTION WITH REGARD TO MD
SIMULATIONS 91 4.7 SUMMARY 97 5 TRANSPORT MODELS 99 5.1 THE BOLTZMANN
TRANSPORT EQUATION 99 5.1.1 INTRODUCTION 99 5.1.2 THE FORWARD TRANSPORT
EQUATION 100 5.1.3 THE BACKWARD TRANSPORT EQUATION 102 5.1.4 THE
TIME-INDEPENDENT BOLTZMANN EQUATION 103 5.1.5 REMARKS 104 5.2 ION
PENETRATION 105 5.2.1 THE ENERGY LOSS DISTRIBUTION 105 5.2.2 RANGE
DISTRIBUTION: SMALL DEFLECTIONS 109 5.2.3 RANGE DISTRIBUTION: THE
GENERAL CASE 116 5.2.4 HIGH ENERGY 123 5.2.5 NUMERICAL SOLUTION 123 5.3
EFFECTS UPON THE TARGET 127 5.3.1 INTRODUCTION 127 5.3.2 THE TRANSPORT
EQUATION: THE RECOIL TERM 128 5.3.3 DEPOSITED ENERGY DISTRIBUTION: EQUAL
MASS CASES 130 5.3.4 DEPOSITED ENERGY DISTRIBUTION: NON-EQUAL MASS CASES
132 5.3.5 THE DISTRIBUTION OF DISPLACED ATOMS 133 5.4 SPUTTERING 140 5.5
MIXING 146 5.5.1 INTRODUCTION 146 5.5.2 MODELLING ION-BEAM ATOMIC MIXING
147 5.5.3 THE DIFFUSION APPROXIMATION 153 CONTENTS VII 5.5.4 A MIXING
EXAMPLE 154 5.6 CONCLUSION 158 6 THE REST DISTRIBUTION OF PRIMARY IONS
IN AMORPHOUS TARGETS 161 6.1 INTRODUCTION 161 6.2 ION-SOLID INTERACTION
162 6.3 A RANDOM SOLID 165 6.4 MC SIMULATION 168 6.4.1 NON-UNIFORM
RANDOM VARIABLES 168 6.4.2 ALGORITHMS 169 6.5 TRANSPORT EQUATIONS 171
6.5.1 DERIVATION OF A LINDHARD-TYPE ** 171 6.5.2 MOMENTS SOLUTION OF A
PLANE SOURCE ** 173 6.5.3 TES USING THE GAS AND LIQUID TARGET MODELS 176
6.5.4 NUMERICAL SOLUTION OF LINDHARD-TYPE TES 178 6.5.5 COUPLING
RELATIONS 179 6.5.6 IMPLEMENTATION 179 6.6 SPATIAL MOMENTS OF
IMPLANTATION PROFILES 180 6.6.1 PROJECTIONS 180 6.6.2 MOMENTS ABOUT THE
ORIGIN 181 6.6.3 VERTICAL MOMENTS ABOUT (Z) 181 6.6.4 LATERAL MOMENTS
182 6.6.5 MIXED MOMENTS 183 6.7 GENERATING PROFILES IN ONE AND TWO
DIMENSIONS 183 6.7.1 THE PEARSON FAMILY OF FREQUENCY CURVES 185 6.8
MODELS FOR DEPTH-DEPENDENT LATERAL MOMENTS 191 6.9 COMPARISON OF ** AND
MC COMPUTER CODES 194 6.9.1 MOMENTS 194 6.9.2 1-D PROFILES 194 6.9.3 2-D
PROFILES 199 6.10 ADDITIONAL REMARKS 200 7 BINARY COLLISION ALGORITHMS
203 7.1 INTRODUCTION 203 7.2 COLLISIONS 204 7.3 EVENT STORE MODELS 205
7.4 THE GENEALOGY OF A BINARY COLLISION PROGRAM 206 7.4.1 NEXT EVENT
ALGORITHMS 206 7.4.2 EVENT ORDERING 209 7.4.3 NON-LINEAR EVENTS 210
7.4.4 MULTIPLE COLLISIONS 212 7.4.5 INCIDENT ION DISTRIBUTIONS 212 VLLL
CONTENTS 7.4.6 FULL CASCADE MODELS 214 7.4.7 RANDOM MATERIALS - MONTE
CARLO MODELS 215 7.4.8 INPUT PARAMETERS 216 7.4.9 SINGLE-CRYSTAL
MATERIALS - DETERMINISTIC MODELS 218 7.5 DYNAMIC MODELS 219 7.5.1 DOSE
EFFECTS 219 7.5.2 ANNEALING EFFECTS 222 7.6 APPLICATIONS 224 7.6.1 ION
SCATTERING SPECTROSCOPY 224 7.6.2 SPUTTERING 228 7.6.3 TRAJECTORIES AND
DISPLACED PARTICLES 231 7.7 CONCLUSIONS 231 8 MOLECULAR DYNAMICS 234 8.1
EQUATIONS OF MOTION 234 8.2 NUMERICAL INTEGRATION ALGORITHMS 235 8.2.1
HAMILTONIAN SYSTEMS 235 8.2.2 CONSTRAINT DYNAMICS 239 8.2.3 NUMERICAL
INTEGRATION ALGORITHMS FOR NON-HAMILTONIAN SYSTEMS 241 8.3 NEIGHBOUR
LISTS FOR SHORT-RANGED POTENTIALS 242 8.4 CONSTRUCTION OF THE NEIGHBOUR
LISTS 244 8.5 THE CELL INDEX METHOD 245 8.6 TIMESTEP CONTROL 246 8.7 THE
MOVING ATOM APPROXIMATION 248 8.8 BOUNDARY CONDITIONS 249 8.8.1 CONSTANT
TEMPERATURE-CONSTANT PRESSURE MOLECULAR DYNAMICS 251 8.9 ELECTRONIC
ENERGY LOSSES IN MD 252 8.10 LATTICE GENERATION 253 8.11 LATTICE
VIBRATIONS 254 8.12 ENSEMBLES OF TRAJECTORIES 256 8.13 APPLICATIONS OF
MOLECULAR DYNAMICS TO SURFACE PHENOMENA 258 8.13.1 ANGULAR DISTRIBUTIONS
OF EJECTED PARTICLES 259 8.13.2 THE DEPTH OF ORIGIN OF EJECTED PARTICLES
262 8.13.3 EJECTED ATOM ENERGY DISTRIBUTIONS 262 8.13.4 ATOMS PER SINGLE
ION (ASI) DISTRIBUTIONS 264 8.13.5 YIELD VARIATION WITH INCIDENCE ANGLE:
IMPACT COLLISION SIMS 267 8.13.6 CLUSTER EJECTION 268 8.13.7 CLUSTER
BEAMS 270 8.13.8 RADIATION DAMAGE IN METALS 272 8.13.9 RADIATION DAMAGE
IN SEMICONDUCTORS 274 CONTENTS IX 8.13.10 ION IMPLANTATION 275 8.13.11
ION SCATTERING AND SURFACE SKIPPING MOTION 276 8.13.12 CRYSTAL GROWTH
278 8.14 CONCLUSION 282 9 SURFACE TOPOGRAPHY 284 9.1 INTRODUCTION 284
9.2 CELLULAR MODELS OF DEPOSITION AND EROSION 285 9.3 CONTINUUM MODELS
OF DEPOSITION AND EROSION 291 9.3.1 ISOTROPIC EROSION AND DEPOSITION 291
9.3.2 NON-ISOTROPIC EROSION 293 9.4 RE-DEPOSITION 302 9.5 OTHER
SECONDARY EFFECTS 305 9.6 CONCLUSION 305 INDEX 307
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isbn | 052144022X |
language | English |
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physical | IX, 309 S. Ill., graph. Darst. |
publishDate | 1997 |
publishDateSearch | 1997 |
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publisher | Cambridge Univ. Press |
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spelling | Atomic and ion collisions in solids and at surfaces theory, simulation and applications ed. by Roger Smith 1. publ. Cambridge Cambridge Univ. Press 1997 IX, 309 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Collisions (Nuclear physics) Solids Surfaces Ionenstoß (DE-588)4162346-0 gnd rswk-swf Festkörperoberfläche (DE-588)4127823-9 gnd rswk-swf Atomstoß (DE-588)4135380-8 gnd rswk-swf Festkörperoberfläche (DE-588)4127823-9 s Atomstoß (DE-588)4135380-8 s Ionenstoß (DE-588)4162346-0 s DE-604 Smith, Roger 1947- Sonstige (DE-588)136841708 oth GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007501660&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Atomic and ion collisions in solids and at surfaces theory, simulation and applications Collisions (Nuclear physics) Solids Surfaces Ionenstoß (DE-588)4162346-0 gnd Festkörperoberfläche (DE-588)4127823-9 gnd Atomstoß (DE-588)4135380-8 gnd |
subject_GND | (DE-588)4162346-0 (DE-588)4127823-9 (DE-588)4135380-8 |
title | Atomic and ion collisions in solids and at surfaces theory, simulation and applications |
title_auth | Atomic and ion collisions in solids and at surfaces theory, simulation and applications |
title_exact_search | Atomic and ion collisions in solids and at surfaces theory, simulation and applications |
title_full | Atomic and ion collisions in solids and at surfaces theory, simulation and applications ed. by Roger Smith |
title_fullStr | Atomic and ion collisions in solids and at surfaces theory, simulation and applications ed. by Roger Smith |
title_full_unstemmed | Atomic and ion collisions in solids and at surfaces theory, simulation and applications ed. by Roger Smith |
title_short | Atomic and ion collisions in solids and at surfaces |
title_sort | atomic and ion collisions in solids and at surfaces theory simulation and applications |
title_sub | theory, simulation and applications |
topic | Collisions (Nuclear physics) Solids Surfaces Ionenstoß (DE-588)4162346-0 gnd Festkörperoberfläche (DE-588)4127823-9 gnd Atomstoß (DE-588)4135380-8 gnd |
topic_facet | Collisions (Nuclear physics) Solids Surfaces Ionenstoß Festkörperoberfläche Atomstoß |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007501660&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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