Magnetohydrodynamics in binary stars:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Dordrecht [u.a.]
Kluwer
1997
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Schriftenreihe: | Astrophysics and space science library
216 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XI, 311 S. graph. Darst. |
ISBN: | 0792346068 |
Internformat
MARC
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Datensatz im Suchindex
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adam_text | MAGNETOHYDRODYNAMICS IN BINARY STARS BY C. G. CAMPBELL DEPARTMENT OF
MATHEMATICS, UNIVERSITY OF NEWCASTLE UPON TYNE, UNITED KINGDOM KLUWER
ACADEMIC PUBLISHERS DORDRECHT / BOSTON / LONDON TABLE OF CONTENTS
MAGNETISM IN BINARY STARS 1 1.1 CLOSE BINARIES 1 1.2 MAGNETIC FIELDS IN
BINARIES 4 1.3 MAGNETOHYDRODYNAMICS 5 1.4 TYPES OF PROBLEMS 6
THEORETICAL PREREQUISITES 9 2.1 INTRODUCTION 9 2.2 BEHAVIOUR OF B FIELDS
IN PLASMAS 10 2.2.1 PLASMA FLUIDS 10 2.2.2 MAXWELL S EQUATIONS 15 2.2.3
THE INDUCTION EQUATION 17 2.2.4 MAGNETIC FORCE 23 2.2.5 THE
MAGNETO-FLUID EQUATIONS 25 2.2.6 HYDROMAGNETIC WAVES 32 2.2.7 THE
FREE-FALL ALFVEN RADIUS 37 2.2.8 POLOIDAL AND TOROIDAL REPRESENTATION OF
B 38/ 2.2.9 DECAY MODES OF B IN A CONDUCTOR 40 2.2.10 MAGNETIC
DIFFUSIVITY . ) 42 2.3 BASIC DYNAMO THEORY 45 2.3.1 FIELD GENERATION 45
2.3.2 TYPES OF MEAN-FIELD DYNAMOS 49 2.4 CLOSE BINARY STARS 50 2.4.1.
THE ROCHE MODEL 50 2.4.2 MASS TRANSFER 56 2.4.3 ACCRETION DISCS 60 2.5
SPIN DYNAMICS .-) 73 THE AM HERCULIS STARS 79 3.1 THE DISCOVERY OF AM
HERCULIS 79 3.2 OTHER SYSTEMS 81 3.3 SYNCHRONOUS ROTATION OF THE PRIMARY
84 3.4 MHD PROBLEMS 85 VN VIII TABLE OF CONTENTS 4 MAGNETIC COUPLING TO
THE SECONDARY 87 4.1 INDUCTION OF CURRENTS IN THE SECONDARY 87 4.2
SOLUTION OF THE DIFFUSION EQUATION 89 4.3 THE DISSIPATION TORQUE 95 4.4
ASYMPTOTIC SYNCHRONIZATION TIMES 101 4.5 DISCUSSION 103 5 THE ACCRETION
TORQUE 105 5.1 THE EFFECT OF MAGNETIC FORCE 105 5.2 ANGULAR MOMENTUM
TRANSFER 107 5.3 SYNCHRONOUS AND ASYNCHRONOUS CASES 115 5.3.1 THE
SYNCHRONOUS CASE 115 5.3.2 THE ASYNCHRONOUS CASE 121 5.4 PARTIAL FIELD
CHANNELLING 123 5.5 DISCUSSION 125 6 THE MAINTENANCE OF SYNCHRONISM 127
6.1 NON-DISSIPATIVE TORQUES 127 6.2 ACCRETION VERSUS MAGNETISM IN
TWO-DIMENSIONS 128 6.3 ACCRETION VERSUS MAGNETISM IN THREE-DIMENSIONS
132 6.3.1 ORIENTATIONS WITH ZERO TORQUE 132 6.3.2 STABILITY OF THE
SYNCHRONOUS STATE 134 6.3.3 STABLE SYNCHRONOUS ORIENTATIONS 139 6.4
QUADRUPOLAR MAGNETIC FIELDS 140 6.5 GRAVITY VERSUS MAGNETISM 141 6.5.1
THE SYNCHRONOUS STATE 141 6.5.2 STABILITY OF THE SYNCHRONOUS STATE 145
6.5.3 DISTRIBUTION OF SYNCHRONOUS STATES 149 6.6 ORBITAL TORQUES 151 6.7
CONCLUSIONS 153 7 THE ATTAINMENT OF SYNCHRONISM 155 7.1 THE COMBINED
EFFECT OF TORQUES 155 7.2 THE EFFECT OF A LOCKING MECHANISM 159 7.3
CONCLUSIONS 161 8 BINARY STARS WITH PARTIAL ACCRETION DISCS 163 8.1
INTRODUCTION 163 8.2 THE INTERMEDIATE POLARS 163 8.2.1 DISCOVERY AND
CLASSIFICATION 163 8.2.2 ROTATION PERIODS AND MAGNETIC FIELDS 165 8.3
THE X-RAY BINARY PULSARS 165 8.3.1 DISCOVERY AND CLASSIFICATION 165 IX
8.3.2 SYSTEMS WITH ACCRETION DISCS 166 8.3.3 NEUTRON STAR SPIN EVOLUTION
167 8.4 MHD PROBLEMS . 168 9 BINARIES WITH PARTIAL DISCS: DISC STRUCTURE
171 9.1 INTRODUCTION 171 9.2 THE INNER DISC STRUCTURE 172 9.2.1 THE
MAGNETIC DISC EQUATIONS 172 9.2.2 VERTICAL EQUILIBRIUM AND ANGULAR
MOMENTUM ADVECTIONL79 9.2.3 DISSIPATION AND RADIATIVE TRANSFER 181 9.2.4
DISC SOLUTION WITH UNSPECIFIED R 183 9.2.5 DISC STRUCTURE WITH
SPECIFIED 77 185 9.2.6 DISCUSSION 187 9.3 NUMERICAL SOLUTIONS 188 9.3.1
THE MAGNETO-VISCOUS EQUATIONS 188 9.3.2 SOLUTIONS AND VISCOUS
INSTABILITY 189 9.4 CONCLUSIONS 191 10 BINARIES WITH PARTIAL DISCS: SPIN
EVOLUTION193 10.1 INTRODUCTION 193 10.2 THE EFFECT OF AZIMUTHAL MAGNETIC
FORCE 194 10.2.1 THE KINEMATIC CONDITION 194 10.2.2 MAGNETIC BUOYANCY
DIFFUSIVITY 195 10.2.3 TURBULENT DIFFUSIVITY 196 10.3 EXACT SOLUTIONS OF
THE INDUCTION EQUATION 197 10.3.1 CONSTANT DIFFUSIVITY 197 10.3.2
VARIABLE DIFFUSIVITY . ., 200 10.4 THE STELLAR TORQUES 202 10.4.1
MAGNETIC AND ACCRETION TORQUES 202 10.4.2 MAGNETIC BUOYANCY 203 10.4.3
TURBULENT DIFFUSION 204 10.5 STELLAR SPIN EVOLUTION 205 10.5.1 MAGNETIC
BUOYANCY 205 10.5.2 TURBULENT DIFFUSION 206 10.6 CONCLUSIONS 208 11
INTRINSIC MAGNETISM IN ACCRETION DISCS 211 11.1 INTRODUCTION 211 11.2
ACCRETION DISC DYNAMOS 213 11.2.1 TURBULENT AW-DYNAMOS IN THIN DISCS 213
11.2.2 DYNAMO ACTION BY INTERNAL WAVES 221 11.2.3 SHEAR INSTABILITIES IN
WEAKLY MAGNETIZED DISCS . . . . 222 11.2.4 DISC DYNAMOS WITH
HYDROMAGNETIC TURBULENCE . . . . 227 X- TABLE OF CONTENTS 11.3 A
MAGNETICALLY-DRIVEN DISC 231 11.3.1 MAGNETIC DISC EQUATIONS 231 11.3.2
VERTICAL INTEGRALS 238 11.3.3 THERMAL ENERGY TRANSPORT 240 11.3.4 THE
DYNAMO 241 11.3.5 MAGNETIC DISC STRUCTURE 244 11.3.6 CONCLUSIONS 245
11.4 MAGNETO-VISCOUS DISCS 246 11.4.1 VERTICAL INTEGRALS 246 11.4.2 DISC
SOLUTIONS 247 11.5 DISCUSSION 248 12 MAGNETIC WINDS 251 12.1
INTRODUCTION 251 12.2 STELLAR MAGNETIC WIND THEORY 252 12.2.1 ANGULAR
MOMENTUM TRANSPORT 252 12.2.2 THE WIND FLOW 256 12.2.3 THE BRAKING
TORQUE 258 12.2.4 A SIMPLE FIELD MODEL 259 12.3 STELLAR WINDS IN CLOSE
BINARIES 268 12.3.1 ORBITAL ANGULAR MOMENTUM LOSS AND MASS TRANSFER .
268 12.3.2 THE WIND MASS LOSS RATE AND THE THERMAL TIME-SCALE 273 12.3.3
LINEAR DYNAMO LAW 274 12.3.4 INVERSE ROSSBY NUMBER LAW 276 12.3.5 A
NON-LINEAR LAW 277 12.3.6 THE PERIOD GAP 279 12.3.7 AM HERCULIS SYSTEMS
283 12.4 ACCRETION DISC WINDS 284 12.4.1 THE WIND SOURCE 284 12.4.2 WIND
FLOW STABILITY 287 12.5 DISCUSSION 293 APPENDIX 295 A PHYSICAL CONSTANTS
AND SOLAR PARAMETERS 295 B VECTOR IDENTITIES 295 C OPERATORS IN
ORTHOGONAL COORDINATES 296 C.I SPHERICAL POLAR COORDINATES 296 C.2
CYLINDRICAL COORDINATES 296 D VISCOSITY EXPRESSIONS 297 D.I VISCOUS
FORCE IN VECTOR OPERATOR FORM 297 D.2 RATE OF STRAIN TENSOR IN
CYLINDRICAL COORDINATES . . . 297 E ORTHOGONAL FUNCTIONS 298 XI E.I
BESSEL FUNCTIONS 298 E.2 ASSOCIATED LEGENDRE FUNCTIONS 298 F ELLIPTIC
INTEGRALS 300 G GRAVITATIONAL TORQUE ON A SPHEROID 300 INDEX 303
|
any_adam_object | 1 |
author | Campbell, C. G. |
author_facet | Campbell, C. G. |
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dewey-raw | 523.841 |
dewey-search | 523.841 |
dewey-sort | 3523.841 |
dewey-tens | 520 - Astronomy and allied sciences |
discipline | Physik |
format | Book |
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isbn | 0792346068 |
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physical | XI, 311 S. graph. Darst. |
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spelling | Campbell, C. G. Verfasser aut Magnetohydrodynamics in binary stars by C. G. Campbell Dordrecht [u.a.] Kluwer 1997 XI, 311 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Astrophysics and space science library 216 Magnetohydrodynamik (DE-588)4130803-7 gnd rswk-swf Doppelstern (DE-588)4150454-9 gnd rswk-swf (DE-588)1071861417 Konferenzschrift gnd-content Doppelstern (DE-588)4150454-9 s Magnetohydrodynamik (DE-588)4130803-7 s 1\p DE-604 Astrophysics and space science library 216 (DE-604)BV000000296 216 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008120418&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Campbell, C. G. Magnetohydrodynamics in binary stars Astrophysics and space science library Magnetohydrodynamik (DE-588)4130803-7 gnd Doppelstern (DE-588)4150454-9 gnd |
subject_GND | (DE-588)4130803-7 (DE-588)4150454-9 (DE-588)1071861417 |
title | Magnetohydrodynamics in binary stars |
title_auth | Magnetohydrodynamics in binary stars |
title_exact_search | Magnetohydrodynamics in binary stars |
title_full | Magnetohydrodynamics in binary stars by C. G. Campbell |
title_fullStr | Magnetohydrodynamics in binary stars by C. G. Campbell |
title_full_unstemmed | Magnetohydrodynamics in binary stars by C. G. Campbell |
title_short | Magnetohydrodynamics in binary stars |
title_sort | magnetohydrodynamics in binary stars |
topic | Magnetohydrodynamik (DE-588)4130803-7 gnd Doppelstern (DE-588)4150454-9 gnd |
topic_facet | Magnetohydrodynamik Doppelstern Konferenzschrift |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008120418&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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