Introduction to complex plasmas:
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin ; Heidelberg
Springer
2010
|
Schriftenreihe: | Springer series on atomic, optical, and plasma physics
59 |
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | Literaturangaben. - Zusätzliches Online-Angebot unter www.springer.com |
Beschreibung: | XVII, 447 S. Ill., graph. Darst. |
ISBN: | 9783642105913 |
Internformat
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Datensatz im Suchindex
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adam_text |
CONTENTS PART I INTRODUCTION 1 COMPLEX PLASMAS 3 PATRICK LUDWIG, MICHAEL
BONITZ, AND JUERGEN MEICHSNER 1.1 PLASMAS IN NATURE AND IN THE LABORATORY
3 1.2 COMPLEX PLASMAS 7 1.3 LOW-TEMPERATURE PLASMAS AND TECHNOLOGICAL
APPLICATIONS 9 1.4 OUTLINE OF THIS BOOK 12 REFERENCES 13 PART II
CLASSICAL AND QUANTUM PLASMAS 2 PRINCIPLES OF TRANSPORT IN
MULTICOMPONENT PLASMAS 17 IGOR D. KAGANOVICH, RAOUL N. FRANKLIN, AND
VLADIMIR I. DEMIDOV 2.1 INTRODUCTION 18 2.1.1 PRODUCTION AND DESTRUCTION
MECHANISMS OF NEGATIVE IONS 19 2.1.2 THE DRIFT-DIFFUSION APPROXIMATION
FOR THE DESCRIPTION OF PLASMA TRANSPORT 20 2.2 AMBIPOLAR DIFFUSION 21
2.3 TEMPORAL DYNAMICS OF NEGATIVE ION FLOWS IN MULTICOMPONENT PLASMAS 23
2.4 AFTERGLOW IN MULTICOMPONENT PLASMAS AND CONSEQUENT WALL FLUXES OF
NEGATIVE IONS 27 2.5 STEADY-STATE PROFILES OF PLASMAS WITH NEGATIVE IONS
30 2.6 THE SHEATH IN STRONGLY ELECTRONEGATIVE GASES 33 2.7 THE
CONNECTION BETWEEN PLASMAS WITH NEGATIVE IONS, DUSTY PLASMAS, AND BALL
LIGHTNING 35 REFERENCES 38 BIBLIOGRAFISCHE INFORMATIONEN
HTTP://D-NB.INFO/100003321X DIGITALISIERT DURCH CONTENTS INTRODUCTION TO
QUANTUM PLASMAS 41 MICHAEL BONITZ, ALEXEI FILINOV, JENS BONING, AND
JAMES W. DUFTY 3.1 INTRODUCTION 41 3.2 RELEVANT PARAMETERS OF QUANTUM
PLASMAS 43 3.3 DIFFERENT STATES OF QUANTUM PLASMAS 46 3.4 OCCURRENCES OF
QUANTUM PLASMAS 48 3.4.1 ASTROPHYSICAL PLASMAS 48 3.4.2 DENSE LABORATORY
PLASMAS 48 3.4.3 LASER PLASMAS 49 3.4.4 PLASMAS IN CONDENSED MATTER
SYSTEMS 49 3.4.5 HIGHLY COMPRESSED TWO-COMPONENT PLASMAS: MOTT EFFECT 50
3.4.6 ULTRA-DENSE PLASMAS IN NUCLEAR MATTER: QUARK-GLUON PLASMA AND THE
BIG BANG 52 3.5 THEORETICAL DESCRIPTION OF QUANTUM PLASMAS 53 3.5.1
BASIC EQUATIONS 54 3.5.2 THERMODYNAMICS OF PARTIALLY IONIZED PLASMAS 54
3.5.3 SPIN EFFECTS IN QUANTUM PLASMAS 58 3.5.4 BOSE PLASMAS 60 3.5.5
PLASMAS OF PARTICLES HAVING FERMI STATISTICS 64 3.5.6 QUANTUM KINETIC
THEORY 66 3.5.7 MORE ADVANCED APPROACH: THE METHOD OF SECOND
QUANTIZATION 68 3.5.8 OTHER APPROACHES TO QUANTUM PLASMAS 71 3.6
CONCLUSIONS 75 REFERENCES 75 INTRODUCTION TO QUANTUM PLASMA SIMULATIONS
79 SEBASTIAN BAUCH, KARSTEN BALZER, PATRICK LUDWIG, AND MICHAEL BONITZ
4.1 INTRODUCTION 79 4.2 TIME-DEPENDENT SCHROEDINGER EQUATION 80 4.2.1 1D
CRANK-NICOLSON METHOD 81 4.2.2 TDSE SOLUTION IN BASIS REPRESENTATION 86
4.2. CONTENTS IX 5 QUANTUM EFFECTS IN PLASMA DIELECTRIC RESPONSE:
PLASMONS AND SHIELDING IN NORMAL SYSTEMS AND GRAPHENE 109 NORMAN J.M.
HORING 5.1 INTRODUCTION 109 5.1.1 BACKGROUND 109 5.1.2 QUANTUM THEORY OF
DIELECTRIC RESPONSE ILL 5.2 QUANTUM EFFECTS IN NORMAL SOLID-STATE
PLASMAS 113 5.2.1 THREE-DIMENSIONAL QUANTUM PLASMA 113 5.2.2 DIELECTRIC
PROPERTIES OF LOW-DIMENSIONAL SYSTEMS 115 5.2.3 DIELECTRIC FUNCTION OF A
MAGNETIZED QUANTUM PLASMA 117 5.3 GRAPHENE 121 5.3.1 INTRODUCTION 121
5.3.2 GRAPHENE HAMILTONIAN, GREEN'S FUNCTION, AND RPA DIELECTRIC
FUNCTION 123 5.3.3 SOME PHYSICAL FEATURES OF GRAPHENE 127 5.4 SUMMARY
130 REFERENCES 131 PART III STRONGLY COUPLED AND DUSTY PLASMAS 6 IMAGING
DIAGNOSTICS IN DUSTY PLASMAS 135 DIETMAR BLOCK AND ANDRE MELZER 6.1
INTRODUCTION 135 6.2 IMAGING 2D SYSTEMS 136 6.2.1 IMAGING PARTICLES 136
6.2.2 IMAGE ANALYSIS 138 6.3 IMAGING 3D SYSTEMS 141 6.3.1 SCANNING VIDEO
MICROSCOPY 141 6.3.2 COLOR GRADIENT METHOD 142 6.3.3 STEREOSCOPY 143
6.3.4 DIGITAL HOLOGRAPHY 146 6.4 SUMMARY AND OUTLOOK 152 REFERENCES 152
7 STRUCTURE AND DYNAMICS OF FINITE DUST CLUSTERS 155 ANDRE MELZER AND
DIETMAR BLOCK 7.1 INTRODUCTION 155 7.2 TRAPPING OF DUST CLOUDS 156 7.3
FORMATION OF FINITE DUST CLUSTERS 158 7. CONTENTS 7.10 SHELL TRANSITIONS
IN YUKAWA BALLS 170 7.11 DYNAMICAL PROPERTIES OF YUKAWA BALLS 171 7.12
SUMMARY 172 REFERENCES 173 STATISTICAL THEORY OF SPHERICALLY CONFINED
DUST CRYSTALS 175 CHRISTIAN HENNING AND MICHAEL BONITZ 8.1 INTRODUCTION
175 8.2 VARIATIONAL PROBLEM OF THE ENERGY FUNCTIONAL 176 8.3
GROUND-STATE DENSITY PROFILE WITHIN MEAN-FIELD APPROXIMATION. 180
8.3.1 THE COULOMB LIMIT AND ELECTROSTATICS 180 8.3.2 GENERAL SOLUTION
181 8.3.3 DENSITY PROFILE FOR HARMONIC CONFINEMENT 183 8.3.4 FORCE
EQUILIBRIUM WITHIN YUKAWA ELECTROSTATICS 185 8.4 SIMULATION RESULTS OF
SPATIALLY CONFINED DUST CRYSTALS 187 8.4.1 GROUND-STATE SIMULATIONS 188
8.4.2 COMPARISON OF SIMULATION AND MEAN-FIELD RESULTS 190 8.5 INCLUSION
OF CORRELATIONS BY USING THE LOCAL DENSITY APPROXIMATION 191 8.5.1 LDA
WITHOUT CORRELATIONS 192 8.5.2 LDA WITH CORRELATIONS 195 8.5.3
COMPARISON OF SIMULATION AND LDA RESULTS 197 8.6 SHELL MODELS OF
SPHERICAL DUST CRYSTALS 198 8.7 SUMMARY AND DISCUSSION 200 REFERENCES
201 PIC-MCC SIMULATIONS OF CAPACITIVE HIGH-FREQUENCY DISCHARGE DYNAMICS
WITH NANOPARTICLES 203 IRINA V. SCHWEIGERT 9.1 INTRODUCTION 203 9.2
COMBINED PIC-MCC APPROACH FOR FAST SIMULATION OF A RADIO-FREQUENCY
DISCHARGE AT LOW GAS PRESSURE 205 9.2.1 COMBINED PIC-MCC APPROACH 206
9.2.2 DESCRIPTION OF THE ALGORITHM 207 9.2. CONTENTS XI 10 MOLECULAR
DYNAMICS SIMULATION OF STRONGLY CORRELATED DUSTY PLASMAS 231 TORBEN OTT,
PATRICK LUDWIG, HANNO KAEHLERT, AND MICHAEL BONITZ 10.1 INTRODUCTION 231
10.2 BASICS OF MOLECULAR DYNAMICS SIMULATION 232 10.2.1 SIMULATION MODEL
OF STRONGLY COUPLED DUSTY PLASMAS . .234 10.2.2 EQUATIONS OF MOTION OF
A ONE-COMPONENT PLASMA 236 10.2.3 VELOCITY VERLET INTEGRATION SCHEME 238
10.2.4 RUNGE-KUTTA INTEGRATION SCHEME 239 10.3 EQUILIBRIUM SIMULATIONS:
THERMODYNAMIC ENSEMBLES 240 10.3.1 VELOCITY SCALING 241 10.3.2
STOCHASTIC THERMOSTATS 241 10.3.3 NOSE-HOOVER THERMOSTAT 242 10.3.4
LANGEVIN DYNAMICS SIMULATION 242 10.3.5 DIMENSIONLESS SYSTEM OF UNITS
244 10.4 SIMULATION OF MACROSCOPIC SYSTEMS 245 10.4.1 POTENTIAL
TRUNCATION 245 10.4.2 ELECTROSTATIC INTERACTIONS 246 10.4.3 FINDING OF
NEIGHBORING PARTICLES 246 10.4.4 PERIODIC BOUNDARY CONDITIONS 247 10.5
INPUT AND OUTPUT QUANTITIES 249 10.5.1 PAIR DISTRIBUTION FUNCTION AND
STATIC STRUCTURE FACTOR 249 10.5.2 TRANSPORT PROPERTIES 251 10.6
APPLICATIONS I: MESOSCOPIC SYSTEMS IN TRAPS 251 10.6.1 SIMULATED
ANNEALING 252 10.6.2 EFFECT OF SCREENING 254 10.6.3 EFFECT OF FRICTION
255 10.7 APPLICATIONS II: MACROSCOPIC SYSTEMS 258 10.7.1 SIMULATION
RESULTS 259 10.8 CONCLUSION 261 REFERENCES 262 PART IV REACTIVE PLASMAS,
PLASMA-SURFACE INTERACTION, AN XII CONTENTS 11.4 PLASMA-SURFACE
INTERACTION 276 11.4.1 PLASMA SHEATH 276 11.4.2 SURFACE ON FLOATING
POTENTIAL 277 11.4.3 HIGH-VOLTAGE PLASMA SHEATH, RADIO-FREQUENCY PLASMA
SHEATH 278 11.5 LOW-PRESSURE OXYGEN TF-PLASMA 280 11.5.1 PLASMA
CHARACTERIZATION 281 11.5.2 INTERACTION OF OXYGEN PLASMA WITH POLYMERS
291 REFERENCES 296 12 FORMATION AND DEPOSITION OF NANOSIZE PARTICLES ON
SURFACES 299 RAINER HIPPLER, SATYA R. BHATTACHARYYA, AND BORIS M.
SMIRNOV 12.1 INTRODUCTION 299 12.2 MAGNETRON DISCHARGE 300 12.3
NUCLEATION PROCESSES IN A MAGNETRON PLASMA 302 12.4 NANOSIZE CLUSTER
DEPOSITION 305 12.5 MELTING TEMPERATURE AND LATTICE PARAMETERS OF AG
CLUSTERS 307 12.6 RAPID-THERMAL ANNEALING (RTA) OF DEPOSITED CLUSTER
FILMS 308 12.7 EVAPORATION OF CLUSTERS 312 12.8 CONCLUSIONS 313
REFERENCES 313 13 KINETIC AND DIAGNOSTIC STUDIES OF MOLECULAR PLASMAS
USING LASER ABSORPTION TECHNIQUES 315 JUERGEN ROEPCKE, RICHARD ENGELN,
DAAN SCHRAM, ANTOINE ROUSSEAU, AND PAUL B. DAVIES 13.1 INTRODUCTION 316
13.2 PLASMA CHEMISTRY AND REACTION KINETICS 319 13.2.1 STUDIES OF AR/H 2
/N 2 /O 2 MICROWAVE PLASMAS 319 13.2.2 ON THE IMPORTANCE OF SURFACE
ASSOCIATION TO THE FORMATION OF MOLECULES IN A RECOMBINING N2/O2
CONTENTS XIII 13.4.3 TRACE GAS MEASUREMENTS USING OPTICALLY RESONANT
CAVITIES 335 13.4.4 IN SITU MONITORING OF PLASMA ETCH PROCESSES WITH A
QCL ARRANGEMENT IN SEMICONDUCTOR INDUSTRIAL ENVIRONMENT 338 13.5 SUMMARY
AND CONCLUSIONS 340 REFERENCES 340 14 X-RAY DIAGNOSTICS OF
PLASMA-DEPOSITED THIN LAYERS 345 HARM WULFF 14.1 INTRODUCTION 345 14.2
X-RAY ANALYTICAL METHODS 347 14.2.1 GRAZING INCIDENCE X-RAY
DIFFRACTOMETRY, ASYMMETRIC BRAGG CASE 347 14.2.2 GIXD, BRAGG CASE,
SPECULAR REFLECTED 348 14.2.3 X-RAY REFLECTOMETRY 349 14.3 EXAMPLES 350
14.3.1 CHARACTERIZATION OF ITO FILMS 350 14.3.2 STUDY OF AI2O3 FORMATION
DURING MICROWAVE PLASMA TREATMENT OF AL FILMS IN AR-O2 GAS MIXTURES .
.358 14.4 SUMMARY 365 REFERENCES 365 15 THE USE OF NONTHERMAL PLASMAS IN
ENVIRONMENTAL APPLICATIONS 367 KURT H. BECKER 15.1 INTRODUCTION 367 15.2
COMMERCIALLY VIABLE, LARGE-SCALE PLASMA-BASED ENVIRONMENTAL APPLICATIONS
369 15.2.1 OZONIZERS 369 15.2.2 ELECTROSTATIC PRECIPITATION 373 15.3
DECOMPOSITION OF VOLATILE ORGANIC COMPOUNDS IN MICROPLASMAS . 377
15.3.1 EXPERIMENTAL DETAILS 377 15.3.2 VOC DESTRUCTION EFFICIENCY 379
15.3.3 BYPRODUCT FORMATION 381 15.3.4 KINETIC STUDIES 382 15.3.5 SUMMARY
385 15.4 PULSED ELECTRICAL DISCHARGES IN WATER 386 15.4. X V CONTENTS
16 COMPLEX (DUSTY) PLASMAS: APPLICATION IN MATERIAL PROCESSING AND TOOLS
FOR PLASMA DIAGNOSTICS 395 HOLGER KERSTEN AND MATTHIAS WOLTER 16.1
INTRODUCTION 395 16.2 DISTURBING SIDE EFFECTS OF DUST PARTICLES IN
PLASMA PROCESSING 396 16.3 FORMATION AND MODIFICATION OF POWDER
PARTICLES IN PLASMAS FOR VARIOUS INDUSTRIAL APPLICATIONS 398 16.3.1
COATING OF POWDER PARTICLES IN A MAGNETRON DISCHARGE 402 16.3.2
DEPOSITION OF PROTECTIVE COATINGS ON INDIVIDUAL PHOSPHOR PARTICLES 407
16.3.3 PARTICLES AS MICROSUBSTRATES 410 16.4 PARTICLES AS ELECTROSTATIC
PROBES 413 16.4.1 DUST PARTICLES IN FRONT OF AN ADAPTIVE ELECTRODE 417
16.4.2 INTERACTION BETWEEN DUST PARTICLES AND ION BEAMS 426 16.5
PARTICLES AS THERMAL PROBES 434 REFERENCES 439 INDEX 443 |
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spelling | Introduction to complex plasmas Michael Bonitz ... (ed.) Berlin ; Heidelberg Springer 2010 XVII, 447 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Springer series on atomic, optical, and plasma physics 59 Literaturangaben. - Zusätzliches Online-Angebot unter www.springer.com Komplexes Plasma (DE-588)7603780-0 gnd rswk-swf Komplexes Plasma (DE-588)7603780-0 s DE-604 Bonitz, Michael 1960- (DE-588)120375176 edt Springer series on atomic, optical, and plasma physics 59 (DE-604)BV013270105 59 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3423722&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020656362&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Introduction to complex plasmas Springer series on atomic, optical, and plasma physics Komplexes Plasma (DE-588)7603780-0 gnd |
subject_GND | (DE-588)7603780-0 |
title | Introduction to complex plasmas |
title_auth | Introduction to complex plasmas |
title_exact_search | Introduction to complex plasmas |
title_full | Introduction to complex plasmas Michael Bonitz ... (ed.) |
title_fullStr | Introduction to complex plasmas Michael Bonitz ... (ed.) |
title_full_unstemmed | Introduction to complex plasmas Michael Bonitz ... (ed.) |
title_short | Introduction to complex plasmas |
title_sort | introduction to complex plasmas |
topic | Komplexes Plasma (DE-588)7603780-0 gnd |
topic_facet | Komplexes Plasma |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=3423722&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020656362&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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