Advanced astrophysics:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Cambridge [u.a.]
Cambridge Univ. Press
2004
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Ausgabe: | 1. publ. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIV, 296 S. Ill., graph. Darst. |
ISBN: | 0521819679 0521525713 |
Internformat
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Datensatz im Suchindex
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adam_text | ADVANCED ASTROPHYSICS NEB DURIC UNIVERSITY OF NEW MEXICO CAMBRIDGE
UNIVERSITY PRESS CONTENTS PREFACE PAGE XIII PART I CLASSICAL MECHANICS 1
1 ORBITAL MECHANICS 3 1.1 UNIVERSAL GRAVITATION 3 1.1.1 CENTER OF MASS 3
1.1.2 REDUCED MASS . 4 1.2 KEPLER S LAWS 5 1.2.1 PLANETARY ORBITS 9 1.3
BINARY STARS 11 1.3.1 VISUAL BINARIES 11 1.3.2 THE APPARENT ORBIT 11
1.3.3 THE TRUE ORBIT 12 1.3.4 DETERMINING THE ORBITAL ELEMENTS 14 1.3.5
SPECTROSCOPIC BINARIES 14 1.3.6 THE MASS FUNCTION 17 1.3.7 SUMMARY OF
BINARY STAR STUDIES 18 1.3.8 MASS-LUMINOSITY RELATION 19 1.4 EXTRASOLAR
PLANETS 20 1.4.1 THE ASTROMETRIC METHOD 21 1.4.2 THE RADIAL VELOCITY
METHOD 22 1.4.3 THE TRANSIT METHOD 24 1.5 REFERENCES 25 1.6 FURTHER
READING 25 2 GALAXY DYNAMICS 26 2.1 POTENTIALS OF ARBITRARY MATTER
DISTRIBUTIONS 26 2.2 DYNAMICS OF THIN DISKS 27 VI CONTENTS 2.3 ROTATION
CURVES OF DISK GALAXIES 30 2.3.1 ROTATION CURVES OF REAL SPIRAL GALAXIES
31 2.4 AF-BODY GRAVITATIONAL SYSTEMS 34 2.4.1 EQUATION OF MOTION 34
2.4.2 THE VIRIAL THEOREM 35 2.4.3 CLUSTERS OF GALAXIES 36 2.5 REFERENCES
39 2.6 FURTHER READING 39 3 COSMIC EXPANSION AND LARGE SCALE STRUCTURE
40 3.1 THE EXPANSION OF THE UNIVERSE 40 3.1.1 THE COSMOLOGICAL CONSTANT
42 3.2 LARGE-SCALE COSMIC STRUCTURE 45 3.2.1 OVERVIEW 45 3.2.2
CORRELATION FUNCTIONS OF GALAXIES 46 3.2.3 DARK MATTER AND LARGE-SCALE
STRUCTURE 47 3.2.4 HOT AND COLD DARK MATTER 51 3.2.5 THE JEANS MASS AND
GRAVITATIONAL STABILITY 52 3.2.6 POSSIBLE MODELS OF STRUCTURE FORMATION
54 3.3 REFERENCES 55 3.4 FURTHER READING 55 PART II STATISTICAL
MECHANICS 57 4 OVERVIEW OF STATISTICAL MECHANICS 59 4.1 THERMODYNAMICS
59 4.2 CLASSICAL STATISTICAL MECHANICS 61 4.3 QUANTUM STATISTICAL
MECHANICS 63 4.3.1 BOSE-EINSTEIN STATISTICS .. 64 4.3.2 FERMI-DIRAC
STATISTICS 64 4.4 PHOTON DISTRIBUTION FUNCTION 65 4.5 THERMODYNAMIC
EQUILIBRIUM 66 4.6 FURTHER READING 68 5 THE EARLY UNIVERSE 69 5.1 THE 3
K BACKGROUND RADIATION 69 5.1.1 HISTORY OF THE BACKGROUND RADIATION 69
5.1.2 EVOLUTION OF ENERGY DENSITY 70 5.2 GALAXY FORMATION 71 5.3 LOCAL
COSMOLOGY AND NUCLEOSYNTHESIS 72 5.3.1 OVERVIEW 72 5.3.2 PRIMORDIAL
HELIUM 73 5.4 REACTION RATES 75 5.4.1 INTRODUCTION 75 5.5 5.6 5.4.2
5.4.3 5.4.4 5.4.5 5.4.6 BARRIER PENETRATION ESTIMATING REACTION RATES
DESTRUCTION OF D FORMATION OF D FORMATION OF 4 HE PARTICLE EQUILIBRIA IN
THE EARLY UNIVERSE 5.5.1 5.5.2 5.5.3 5.5.4 5.5.5 5.5.6 5.5.7 OVERVIEW
CHEMICAL EQUILIBRIUM THE EARLY UNIVERSE THE NEUTRON-PROTON RATIO
REACTION FREEZE-OUT REACTION TIMESCALE FORMATION OF DEUTERIUM FURTHER
READING STELLAR STRUCTURE AND COMPACT STARS 6.1 6.2 6.3 6.4 6.5 6.6 6.7
HYDROSTATIC EQUILIBRIUM FERMION DEGENERACY 6.2.1 6.2.2 WHITE DWARF
EQUATION OF STATE , MASS-RADIUS RELATION FOR WHITE DWARFS INTERNAL
STRUCTURE OF WHITE DWARFS 6.3.1 6.3.2 6.3.3 6.3.4 6.3.5 6.3.6
RELATIONSHIP BETWEEN PRESSURE AND ENERGY DENSITY RELATING ELECTRON
NUMBER DENSITY TO THE MASS DENSITY OTHER SOURCES OF PRESSURE EQUATION OF
STATE INTERNAL STRUCTURE OF WHITE DWARFS ESTIMATING THE RADIUS AND MASS
OF A WHITE DWARF STABILITY OF COMPACT STARS 6.4.1 6.4.2 6.4.3 TOTAL
ENERGY ELECTRON CAPTURE MAXIMUM DENSITY STRUCTURE OF NEUTRON STARS 6.5.1
6.5.2 6.5.3 6.5.4 OVERVIEW LIQUID LAYER THE CRUST THE CORE PULSARS
FURTHER READING CONTENTS VII 77 81 82 82 83 83 83 86 87 87 88 90 91 93
94 94 97 100 100 100 101 104 105 105 105 107 109 109 110 111 114 114 115
117 119 119 121 VIII CONTENTS PART III ELECTROMAGNETISM 123 7 RADIATION
FROM ACCELERATING CHARGES 125 7.1 THE LIENARD-WIECHERT POTENTIAL 125
7.1.1 SCALAR AND VECTOR POTENTIALS 125 7.1.2 GREEN S FUNCTION SOLUTION
126 7.1.3 THE L-W POTENTIALS 127 7.2 ELECTRIC AND MAGNETIC FIELDS OF A
MOVING CHARGE 128 7.2.1 MOVING CHARGE AT CONSTANT VELOCITY 129 7.2.2
RADIATION FROM ACCELERATING CHARGES - THE FAR ZONE 131 7.2.3 ANGULAR
DISTRIBUTION OF RADIATION 131 7.2.4 TOTAL EMITTED POWER 133 7.3 FURTHER
READING 134 8 BREMSSTRAHLUNG AND SYNCHROTRON RADIATION 135 8.1
BREMSSTRAHLUNG 135 8.1.1 SINGLE PARTICLE COLLISIONS 135 8.1.2 RADIATION
FROM AN ENSEMBLE OF PARTICLES 137 8.2 SYNCHROTRON RADIATION 138 8.2.1
TOTAL POWER , 139 8.2.2 THE RECEIVED SPECTRUM 140 8.2.3 SPECTRUM OF A
POWER-LAW ENERGY DISTRIBUTION 141 8.3 FURTHER READING 143 9 HIGH ENERGY
PROCESSES IN ASTROPHYSICS 144 9.1 NEUTRON STARS 144 9.2 SUPERNOVA
REMNANTS 145 9.2.1 PARTICLE ACCELERATION 145 9.3 RADIO GALAXIES 148 9.4
GALACTIC X-RAY SOURCES 152 9.4.1 THE ENERGY SOURCE 153 9.4.2 MAXIMUM
LUMINOSITY/EDDINGTON LIMIT 153 9.4.3 CHARACTERISTIC TEMPERATURE 154
9.4.4 MASS TRANSFER 154 9.5 ACCRETION DISKS 154 9.5.1 DISK HYDRODYNAMICS
156 9.5.2 THE EMISSION SPECTRUM OF THE DISK 157 9.6 PULSARS REVISITED
159 9.6.1 THE RADIATION FIELD 160 9.6.2 RADIATED POWER 161 9.6.3 THE
BRAKING INDEX 162 9.6.4 THE STATIC MAGNETIC FIELD 162 9.6.5 THE STATIC
ELECTRIC FIELD 162 CONTENTS IX 9.7 REFERENCE 163 9.8 FURTHER READING 163
10 ELECTROMAGNETIC WAVE PROPAGATION 164 10.1 EM WAVES IN AN
UN-MAGNETIZED PLASMA 165 10.1.1 DISPERSION MEASURE 166 10.2 EM WAVES IN
A MAGNETIZED MEDIUM 167 10.2.1 ROTATION MEASURE 170 10.3 REFERENCE 172
10.4 FURTHER READING 172 PART IV QUANTUM MECHANICS 173 11 THE HYDROGEN
ATOM . 175 11.1 STRUCTURE OF THE HYDROGEN ATOM 175 11.1.1 CASEL R - OO
177 11.1.2 CASE 2 R ^ 0 177 11.1.3 WHAT ABOUT THE IN-BETWEEN? 178 11.1.4
NORMALIZING R(R) 179 11.2 TOTAL WAVE FUNCTION 181 11.3 PROBABILITY
FUNCTIONS , 181 11.4 ENERGY EIGENSTATES AND TRANSITIONS 185 11.5 FURTHER
READING 185 12 THE INTERACTION OF RADIATION WITH MATTER 187 12.1
NON-RELATIVISTIC TREATMENT 187 12.2 SINGLE PARTICLE HAMILTONIAN 188 12.3
SEPARATION OF STATIC AND RADIATION FIELDS 189 12.3.1 RELATIVE IMPORTANCE
OF H O , H AND H 2 189 12.4 RADIATIVE TRANSITIONS 190 12.4.1
SEMI-CLASSICAL APPROACH 190 12.4.2 THE HAMILTONIAN OF THE RADIATION
FIELD 191 12.4.3 THE PERTURBATION HAMILTONIAN 192 12.4.4 TIME-DEPENDENT
PERTURBATION THEORY 193 12.5 ABSORPTION OF PHOTONS 194 12.5.1 ABSORPTION
CROSS-SECTIONS 196 12.5.2 DIPOLE TRANSITION PROBABILITY 197 12.5.3
BOUND-BOUND ABSORPTION CROSS-SECTION 198 12.6 SPONTANEOUS EMISSION 199
12.7 PHOTOIONIZATION 200 12.7.1 BOUND-FREE CROSS-SECTIONS 202 12.8
SELECTION RULES 203 12.8.1 DIPOLE SELECTION RULES 204 12.8.2 ELECTRIC
QUADRUPOLE TRANSITIONS 205 X CONTENTS 12.9 NUMERICAL EVALUATION OF
TRANSITION PROBABILITIES 206 12.9.1 THE LYMAN A TRANSITION 207 12.9.2
BOUND-FREE ABSORPTION CROSS-SECTION 209 12.10 HII REGIONS 210 12.10.1
IONIZING STARS 211 12.11 IONIZATION OF A PURE HYDROGEN NEBULA 212
12.11.1 RADIUS OF HII REGION 216 12.12 QUASARS AND THE LYMAN A FOREST
216 12.12.1 CORRELATION STUDIES 218 12.12.2 COLUMN DENSITY OF THE HI
RESPONSIBLE FOR THE LY-A FOREST 220 12.13 REFERENCE 220 12.14 FURTHER
READING 221 13 ATOMIC FINE STRUCTURE LINES 222 13.1 ELECTRON SPIN 222
13.1.1 RELATIVISTIC HAMILTONIAN 222 13.2 DIRAC S POSTULATE 223 13.2.1
THE DIRAC EQUATIPN 224 13.2.2 FREE PARTICLE AT REST 224 13.2.3
NON-RELATIVISTIC LIMIT OF DIRAC S EQUATION 225 13.3 RADIATIVE
TRANSITIONS INVOLVING SPIN 227 13.3.1 ZEEMAN EFFECT 228 13.4
RELATIVISTIC CORRECTION WITH A = 0 228 13.5 ATOMIC FINE STRUCTURE 229
13.5.1 SPIN-ORBIT INTERACTION 230 13.5.2 TIME-INDEPENDENT PERTURBATION
THEORY 230 13.5.3 THE JM REPRESENTATION 231 13.5.4 SOLUTION FOR E SO 232
13.6 FURTHER READING 234 14 ATOMIC HYPERFINE LINES 235 14.1 THE 21 CM
LINE OF HYDROGEN 235 14.1.1 TRANSITION RATE 238 14.1.2 THE 21 CM LINE
PROFILE 239 14.2 THE DOPPLER EFFECT 240 14.2.1 DOPPLER BROADENING OF THE
21 CM LINE 241 14.3 NEUTRAL HYDROGEN IN GALAXIES 242 14.3.1 EQUATION OF
TRANSFER FOR HI EMISSION 242 14.3.2 EMISSION OR ABSORPTION? 244 CONTENTS
XI 14.4 MEASURING HI IN EXTERNAL GALAXIES 244 14.4.1 INTEGRAL PROPERTIES
OF GALAXIES 245 14.4.2 KINEMATICS OF THE HI 245 14.5 PROBING GALACTIC
MASS DISTRIBUTIONS 246 14.5.1 HI ROTATION CURVES 247 14.6 REFERENCES 253
14.7 FURTHER READING 253 15 TRANSITIONS INVOLVING MULTI-ELECTRON ATOMS
254 15.1 SYMMETRY OF MULTI-PARTICLE WAVE FUNCTIONS 254 15.2 THE HELIUM
ATOM 255 15.2.1 THE GROUND STATE 255 15.2.2 LOWEST EXCITED STATES 257
15.2.3 SUMMARY 258 15.3 MANY-ELECTRON ATOMS 259 15.3.1 THE HARTREE-FOCK
PROCEDURE 260 15.4 FORBIDDEN LINES IN ASTROPHYSICS 261 15.4.1
COLLISIONAL EQUILIBRIA 261 15.4.2 LINE EMISSION AND COOLING OF NEBULAS
263 15.4.3 STATISTICAL EQUILIBRIUM FOR N LEVELS 265 15.4.4 OIII LINES AS
PROBES OF TEMPERATURE 266 15.4.5 LINE RATIOS AS DENSITY PROBES 269
15.4.6 OBSERVATIONS OF NEBULAS 270 15.4.7 OBSERVATIONS OF ACTIVE
GALACTIC NUCLEI 270 15.5 FURTHER READING 272 16 MOLECULAR LINES IN
ASTROPHYSICS 273 16.1 DIATOMIC MOLECULES 273 16.1.1 INTER-NUCLEAR
POTENTIAL 273 16.1.2 ELECTRONIC TRANSITIONS 273 16.1.3 VIBRATIONAL
TRANSITIONS 274 16.1.4 ROTATIONAL TRANSITIONS 274 16.1.5 SUMMARY 275
16.2 DIATOMIC MOLECULES WITH TWO VALENCE ELECTRONS 275 16.2.1 THE
BORN-OPPENHEIMER APPROXIMATION 276 16.3 TRANSLATIONAL AND INTERNAL
DEGREES OF FREEDOM 278 16.3.1 VIBRATIONS AND ROTATIONS 279 16.3.2
VIBRATIONS - HARMONIC OSCILLATOR APPROXIMATION 280 16.4 DIPOLE
TRANSITION PROBABILITY 281 16.4.1 PURE ROTATIONAL SPECTRA 282 16.5
TRANSITIONS BETWEEN VIBRATIONAL LEVELS 283 XII CONTENTS 16.6 16.7 16.8
16.9 16.10 16.11 INDEX TRANSITIONS BETWEEN ELECTRONIC LEVELS THE H2
MOLECULE THE CO MOLECULE OTHER MOLECULES LIFE IN THE UNIVERSE 16.10.1
THE BUILDING BLOCKS OF LIFE 16.10.2 COMMUNICATING WITH OTHER
CIVILIZATIONS FURTHER READING 284 285 287 290 291 291 293 293 294
|
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author | Duric, Nebojsa |
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author_role | aut |
author_sort | Duric, Nebojsa |
author_variant | n d nd |
building | Verbundindex |
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ctrlnum | (OCoLC)51942540 (DE-599)BVBBV017059778 |
dewey-full | 523.01 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 523 - Specific celestial bodies and phenomena |
dewey-raw | 523.01 |
dewey-search | 523.01 |
dewey-sort | 3523.01 |
dewey-tens | 520 - Astronomy and allied sciences |
discipline | Physik |
edition | 1. publ. |
format | Book |
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id | DE-604.BV017059778 |
illustrated | Illustrated |
indexdate | 2024-07-09T19:13:19Z |
institution | BVB |
isbn | 0521819679 0521525713 |
language | English |
lccn | 2003048457 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-010294470 |
oclc_num | 51942540 |
open_access_boolean | |
owner | DE-20 |
owner_facet | DE-20 |
physical | XIV, 296 S. Ill., graph. Darst. |
publishDate | 2004 |
publishDateSearch | 2004 |
publishDateSort | 2004 |
publisher | Cambridge Univ. Press |
record_format | marc |
spelling | Duric, Nebojsa Verfasser aut Advanced astrophysics Neb Duric 1. publ. Cambridge [u.a.] Cambridge Univ. Press 2004 XIV, 296 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Astrofysica gtt Astrophysique Astrophysics Astrophysik (DE-588)4003326-0 gnd rswk-swf Astrophysik (DE-588)4003326-0 s DE-604 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010294470&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Duric, Nebojsa Advanced astrophysics Astrofysica gtt Astrophysique Astrophysics Astrophysik (DE-588)4003326-0 gnd |
subject_GND | (DE-588)4003326-0 |
title | Advanced astrophysics |
title_auth | Advanced astrophysics |
title_exact_search | Advanced astrophysics |
title_full | Advanced astrophysics Neb Duric |
title_fullStr | Advanced astrophysics Neb Duric |
title_full_unstemmed | Advanced astrophysics Neb Duric |
title_short | Advanced astrophysics |
title_sort | advanced astrophysics |
topic | Astrofysica gtt Astrophysique Astrophysics Astrophysik (DE-588)4003326-0 gnd |
topic_facet | Astrofysica Astrophysique Astrophysics Astrophysik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010294470&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT duricnebojsa advancedastrophysics |