Plasma physics: basic theory with fusion applications
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin u.a.
Springer
1994
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Ausgabe: | 2., corr. ed. |
Schriftenreihe: | Atoms and plasmas
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIII, 336 S. graph. Darst. |
ISBN: | 3540568549 0387568549 |
Internformat
MARC
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100 | 1 | |a Nishikawa, Kyōji |e Verfasser |4 aut | |
245 | 1 | 0 | |a Plasma physics |b basic theory with fusion applications |c K. Nishikawa ; M. Wakatani |
250 | |a 2., corr. ed. | ||
264 | 1 | |a Berlin u.a. |b Springer |c 1994 | |
300 | |a XIII, 336 S. |b graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 0 | |a Atoms and plasmas | |
650 | 4 | |a Controlled fusion | |
650 | 4 | |a Plasma (Ionized gases) | |
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700 | 1 | |a Wakatani, Masahiro |d 1945- |e Verfasser |0 (DE-588)121193950 |4 aut | |
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Datensatz im Suchindex
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adam_text | K. NISHIKAWA M. WAKATANI PLASMA PHYSICS BASIC THEORY WITH FUSION
APPLICATIONS SECOND, CORRECTED EDITION WITH 80 FIGURES SPRINGER-VERLAG
BERLIN HEIDELBERG NEW YORK LONDON PARIS TOKYO HONG KONG BARCELONA
BUDAPEST CONTENTS 1. INTRODUCTION PART I BASIC THEORY 2. BASIC
PROPERTIES OF PLASMA 6 2.1 PLASMA CONDITION 6 2.2 IDEAL PLASMA 7 2.3
INDIVIDUAL MOTION AND COLLECTIVE MOTION 10 2.4 TYPES OF PLASMAS 11
PROBLEMS 13 3. INDIVIDUAL PARTICLE MOTION 14 3.1 GENERAL RELATIONS 14
3.2 CYCLOTRON MOTION 15 3.2.1 GUIDING CENTER 17 3.2.2 ADIABATIC
INVARIANT 17 3.2.3 MAGNETIC MOMENT 18 3.2.4 MAGNETIC MIRROR 18 3.2.5
MAGNETIC MIRROR TRAP 18 3.2.6 PITCH ANGLE 19 3.2.7 LONGITUDINAL
INVARIANT 19 3.3 DRIFT ACROSS A MAGNETIC FIELD 19 3.3.1 DRIFT VELOCITY
19 3.3.2 EX B DRIFT 20 3.3.3 CURVATURE DRIFT 21 3.3.4 GRADIENT B DRIFT
22 3.4 MOTION IN AN OSCILLATING ELECTRIC FIELD 24 3.4.1 POLARIZATION
DRIFT 23 3.4.2 MAGNETIC FIELD EFFECT 23 3.4.3 CYCLOTRON RESONANCE 24
3.4.4 PONDEROMOTIVE FORCE 24 3.4.5 MAGNETIC FIELD EFFECT 25 3.5 COULOMB
COLLISIONS 26 3.5.1 DIFFERENTIAL CROSS SECTION 27 3.5.2 CUMULATIVE
SMALL-ANGLE SCATTERING 28 IX 3.5.3 COULOMB LOGARITHM 30 3.5.4 COLLISION
FREQUENCIES AND RELAXATION TIMES 30 3.5.5 EFFECTIVE COLLISION FREQUENCY
34 3.6 RELATIVISTIC EFFECTS 35 PROBLEMS 55 4. FORMULATION OF PLASMA
THEORY 39 4.1 THE P-SPACE DESCRIPTION (KLIMONTOVICH SYSTEM OF EQUATIONS)
40 4.2 THE ^-SPACE DESCRIPTION (BOLTZMANN-VLASOV SYSTEM OF EQUATIONS) 42
4.3 DRIFT KINETIC THEORY 44 4.4 TWO-FLUIDS THEORY 47 4.5 RESISTIVE
MAGNETOHYDRODYNAMICS (MHD) 52 PROBLEMS 55 5. ELECTROSTATIC RESPONSE 56
5.1 DEBYE SHIELDING 57 5.1.1 DEBYE POTENTIAL 57 5.1.2 PHYSICAL PICTURE
OF DEBYE SHIELDING 58 5.2 ELECTRON PLASMA OSCILLATION 59 5.3 TWO-BEAM
INSTABILITY 62 5.4 ION ACOUSTIC WAVES 65 5.5 DRIFT WAVES 68 5.5.1
DIAMAGNETIC CURRENT 68 5.5.2 DIAMAGNETIC DRIFT VELOCITY IN THE SLAB
MODEL 69 5.5.3 DRIFT WAVES IN THE SLAB MODEL 70 5.5.4 PROPERTIES OF THE
DRIFT WAVE 73 5.6 NONLINEAR WAVES 74 5.6.1 K-DV EQUATION FOR ION
ACOUSTIC WAVES 74 5.6.2 NONLINEAR ELECTRON PLASMA WAVES 76 PROBLEMS 79
6. KINETIC THEORY 82 6.1 LINEARIZED VLASOV EQUATION 82 6.2 LINEAR
ELECTROSTATIC RESPONSE IN ISOTROPIC PLASMA 83 6.3 LANDAU DAMPING 87
6.3.1 RESONANT PARTICLES AND NONRESONANT PARTICLES 87 6.3.2 EFFECT OF
RESONANT PARTICLES ON ELECTRIC SUSCEPTIBILITY 88 6.3.3 MATHEMATICAL
FORMULATION OF LANDAU DAMPING 90 6.3.4 PHYSICAL MECHANISM 92 6.3.5
KINETIC INSTABILITIES 92 6.4 ELECTROSTATIC RESPONSE IN MAGNETIZED PLASMA
93 6.5 COLLISIONLESS DRIFT WAVE INSTABILITY 97 6.6 TRAPPED PARTICLE
EFFECTS AND QUASILINEAR EFFECTS 99 6.6.1 BOUNCE FREQUENCY 99 6.6.2
BERNSTEIN-GREENE-KRUSKAL (BGK) WAVES 100 6.6.3 QUASILINEAR EFFECTS 102
6.7 SOURCE AND NOISE LEVEL 105 6.8 COLLISION INTEGRAL 108 PROBLEMS 114
7. GENERAL THEORY OF LINEAR WAVES 116 7.1 SOURCE AND RESPONSE 116 7.2
DIELECTRIC TENSOR AND THE DISPERSION RELATION IN A UNIFORM PLASMA 118
7.3 COLD PLASMA MODEL 122 7.3.1 UNMAGNETIZED PLASMA 124 7.3.2 PARALLEL
PROPAGATION 125 7.3.3 PERPENDICULAR PROPAGATION 126 7.3.4 OBLIQUE
PROPAGATION .: 128 7.4 WAVE ENERGY AND MOMENTUM 128 7.4.1 WAVE ENERGY
EQUATION 128 7.4.2 WAVE MOMENTUM 132 7.4.3 ACTION 133 7.4.4
NON-UNIFORMITY EFFECT 133 PROBLEMS 134 8. PARAMETRIC EXCITATION AND MODE
COUPLING 136 8.1 MATHIEU EQUATION MODEL 136 8.1.1 THE CASE OF W 0 ~ 2H 0
137 8.1.2 THE CASE OF W 0 ^ A 138 8.1.3 EFFECT OF DAMPING 140 8.2
COUPLED-MODE PARAMETRIC EXCITATION 140 8.2.1 DISPERSION RELATION 141
8.2.2 UNIFORM OR DIPOLE PUMP: JB 0 = 0 143 8.2.3 STIMULATED SCATTERING
144 8.3 COUPLED ELECTRON PLASMA WAVE AND ION ACOUSTIC WAVE PARAMETRIC
EXCITATION 145 8.3.1 ELECTROMAGNETIC PUMP 145 8.3.2 STIMULATED
SCATTERING 149 8.4 NONLINEAR WAVE-PARTICLE INTERACTION - NONLINEAR
LANDAU DAMPING OF AN ELECTRON PLASMA WAVE 150 8.5 CONDENSATION AND
COLLAPSE OF LANGMUIR WAVES 151 PROBLEMS 153 XI PART II APPLICATIONS TO
FUSION PLASMAS 9. PLASMA CONFINEMENT FOR FUSION 156 9.1 PRINCIPLE OF
THERMONUCLEAR FUSION 156 9.1.1 D-D REACTION 156 9.1.2 D-T REACTION 158
9.1.3 IGNITION CONDITION 159 9.1.4 LAWSON CRITERION 160 9.2 MAGNETIC
CONFINEMENT AND HEATING OF PLASMAS 162 9.2.1 OPEN-END CONFINEMENT 162
9.2.2 TOROIDAL CONFINEMENT 164 9.2.3 TOKAMAK 165 9.2.4 REVERSED FIELD
PINCH AND SPHEROMAK 166 9.2.5 HELICAL SYSTEM (STELLARATOR/HELIOTRON) 168
9.3 INERTIAL CONFINEMENT AND COMPRESSION OF PLASMA 170 10. IDEAL
MAGNETOHYDRODYNAMICS 173 10.1 BASIC EQUATIONS 173 10.2 MHD EQUILIBRIUM
178 10.3 INTERCHANGE INSTABILITY 186 10.4 RAYLEIGH-TAYLOR INSTABILITY
194 10.5 CURRENT DRIVEN INSTABILITY (I) 197 10.6 MHD WAVES 200 PROBLEMS
204 11. RESISTIVE MAGNETOHYDRODYNAMICS 205 11.1 REDUCED MHD EQUATIONS
205 11.1.1 SLAB GEOMETRY 205 11.1.2 TOROIDAL GEOMETRY 207 11.2 TEARING
MODE INSTABILITY AND MAGNETIC ISLANDS 211 11.3 CURRENT DRIVEN
INSTABILITY (II) 216 11.4 BALLOONING INSTABILITY 219 11.5 RESISTIVE
INTERCHANGE AND RIPPLING MODES 222 11.6 DISRUPTIVE INSTABILITY 226 11.7
DRIVEN MAGNETIC RECONNECTION 231 11.8 SELF-ORGANIZATION 234 PROBLEMS 239
12. WAVE-PLASMA INTERACTIONS 240 12.1 WAVES IN NON-UNIFORM PLASMA 240
12.1.1 THE EIKONAL APPROXIMATION 240 12.1.2 THE LOCAL DISPERSION
RELATION 241 12.1.3 GEOMETRICAL OPTICS 241 12.1.4 THE EIGENVALUE PROBLEM
241 XII 12.1.5 ABSOLUTE VS CONVECTIVE INSTABILITIES 244 12.2
ACCESSIBILITY OF WAVES IN MAGNETIZED PLASMAS 244 12.3 RF CONTROL OF
MAGNETIZED PLASMAS 251 12.4 LASER-PLASMA INTERACTION 253 PROBLEMS 255
13. TRANSPORT PROCESSES 256 13.1 GENERAL PROPERTIES OF COLLISIONAL
TRANSPORT 256 13.2 NEOCLASSICAL TRANSPORT IN AXISYMMETRIC TOROIDAL
CONFIGURATIONS 260 13.3 NEOCLASSICAL TRANSPORT IN NONAXISYMMETRIC
MAGNETIC CONFINEMENT 266 13.4 CONVECTIVE CELL AND ASSOCIATED TRANSPORT
271 13.5 DRIFT WAVE TURBULENCE AND ASSOCIATED TRANSPORT 274 13.6 MHD
TURBULENCE AND ASSOCIATED TRANSPORT 278 PROBLEMS 280 14. PROGRESS IN
FUSION RESEARCH 282 14.1 A BRIEF HISTORY OF TOKAMAK RESEARCH 282 14.2
PROGRESS IN OTHER MAGNETIC CONFINEMENT RESEARCH 287 14.3 PROGRESS IN
INERTIAL CONFINEMENT RESEARCH 291 14.4 PLASMA PHYSICS TOWARD FUSION
REACTORS 293 A. APPENDIX 299 A.I PROBLEMS TO PART I BASIC THEORY 299 A.2
PROBLEMS TO PART II APPLICATIONS TO FUSION PLASMAS 310 REFERENCES 323
SUBJECT INDEX 331 XIII
|
any_adam_object | 1 |
author | Nishikawa, Kyōji Wakatani, Masahiro 1945- |
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author_facet | Nishikawa, Kyōji Wakatani, Masahiro 1945- |
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discipline | Physik |
edition | 2., corr. ed. |
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id | DE-604.BV008181499 |
illustrated | Illustrated |
indexdate | 2024-07-09T17:15:55Z |
institution | BVB |
isbn | 3540568549 0387568549 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-005399642 |
oclc_num | 28890386 |
open_access_boolean | |
owner | DE-384 DE-91 DE-BY-TUM DE-91G DE-BY-TUM DE-29T DE-355 DE-BY-UBR DE-19 DE-BY-UBM DE-703 DE-706 DE-188 |
owner_facet | DE-384 DE-91 DE-BY-TUM DE-91G DE-BY-TUM DE-29T DE-355 DE-BY-UBR DE-19 DE-BY-UBM DE-703 DE-706 DE-188 |
physical | XIII, 336 S. graph. Darst. |
publishDate | 1994 |
publishDateSearch | 1994 |
publishDateSort | 1994 |
publisher | Springer |
record_format | marc |
series2 | Atoms and plasmas |
spelling | Nishikawa, Kyōji Verfasser aut Plasma physics basic theory with fusion applications K. Nishikawa ; M. Wakatani 2., corr. ed. Berlin u.a. Springer 1994 XIII, 336 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Atoms and plasmas Controlled fusion Plasma (Ionized gases) Plasmaphysik (DE-588)4046259-6 gnd rswk-swf Plasmaphysik (DE-588)4046259-6 s DE-604 Wakatani, Masahiro 1945- Verfasser (DE-588)121193950 aut HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=005399642&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Nishikawa, Kyōji Wakatani, Masahiro 1945- Plasma physics basic theory with fusion applications Controlled fusion Plasma (Ionized gases) Plasmaphysik (DE-588)4046259-6 gnd |
subject_GND | (DE-588)4046259-6 |
title | Plasma physics basic theory with fusion applications |
title_auth | Plasma physics basic theory with fusion applications |
title_exact_search | Plasma physics basic theory with fusion applications |
title_full | Plasma physics basic theory with fusion applications K. Nishikawa ; M. Wakatani |
title_fullStr | Plasma physics basic theory with fusion applications K. Nishikawa ; M. Wakatani |
title_full_unstemmed | Plasma physics basic theory with fusion applications K. Nishikawa ; M. Wakatani |
title_short | Plasma physics |
title_sort | plasma physics basic theory with fusion applications |
title_sub | basic theory with fusion applications |
topic | Controlled fusion Plasma (Ionized gases) Plasmaphysik (DE-588)4046259-6 gnd |
topic_facet | Controlled fusion Plasma (Ionized gases) Plasmaphysik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=005399642&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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