Eclipsing binary stars: modeling and analysis
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York [u.a.]
Springer
1999
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXVIII, 355 S. Ill., graph. Darst. |
ISBN: | 0387986227 |
Internformat
MARC
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245 | 1 | 0 | |a Eclipsing binary stars |b modeling and analysis |c Josef Kallrath ; Eugene F. Milone |
264 | 1 | |a New York [u.a.] |b Springer |c 1999 | |
300 | |a XXVIII, 355 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
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650 | 7 | |a Binaire à éclipses |2 obspm | |
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650 | 7 | |a Eclipsen |2 gtt | |
650 | 7 | |a Etoiles doubles photomériques |2 ram | |
650 | 4 | |a Eclipsing binaries |x Light curves | |
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Datensatz im Suchindex
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adam_text | JOSEF KALLRATH EUGENE F. MILONE ECLIPSING BINARY STARS MODELING AND
ANALYSIS FOREWORD BY R.E. WILSON WITH 131 ILLUSTRATIONS SPRINGER
CONTENTS FOREWORD VII PREFACE XI ACKNOWLEDGMENTS XV LIST OF FIGURES
XXIII JOURNAL ABBREVIATIONS XXVII ACRONYMS AND ABBREVIATIONS XXIX
MATHEMATICAL NOMENCLATURE AND SYMBOLS, PHYSICAL UNITS . XXXI 1
INTRODUCTION 1 1.1 OVERVIEW OF THE PROBLEM 1 1.1.1 WHY BINARY STARS ARE
IMPORTANT 1. . . 1 1.1.2 PHENOMENOLOGICAL CLASSIFICATION OF ECLIPSING
BINARY LIGHT CURVES 7 1.1.3 MORPHOLOGICAL CLASSIFICATION OF ECLIPSING
BINARIES . 10 1.1.4 WHAT CAN BE DERIVED FROM ECLIPSING BINARIES ... 13
1.1.5 WHY DATA DERIVED FROM ECLIPSING BINARIES ARE IMPORTANT 15 1.2 THE
HISTORY OF LIGHT CURVE MODELING 15 1.2.1 THE PIONEERS: THE AGE OF
GEOMETRY 15 1.2.2 THE AGE OF COMPUTATIONAL ASTROPHYSICS 17 1.2.3
DETERMINING ASTROPHYSICAL PARAMETERS 18 1.2.4 LATER GENERATIONS OF LIGHT
CURVE MODELS 18 1.2.5 ASTROPHYSICAL PROBLEMS SOLVED BY LIGHT CURVE
METHODS 18 1.3 SELECTED BIBLIOGRAPHY FOR CHAPTER 1 20 III CONTENTS THE
DATA BASE AND METHODS OF DATA ACQUISITION 23 2.1 PHOTOMETRY 23 2.1.1
PHOTOELECTRIC PHOTOMETRY 23 2.1.2 TWO-STAR PHOTOMETERS 25 2.1.3
PHOTOELECTRIC OBSERVATIONS . 2 7 2.1.4 IMAGING DATA 28 2.1.5 PHOTOMETRIC
DATA REDUCTION 30 2.1.6 SIGNIFICANCE OF CLUSTER PHOTOMETRY 33 2.2
SPECTROSCOPY 34 2.2.1 RADIAL VELOCITIES 36 2.2.2 SPECTROPHOTOMETRY 38
2.2.3 LINE-PROFILE ANALYSIS 40 2.3 POLARIMETRY 42 2.4 MAGNETOMETRY 44
2.5 DOPPLER PROFILE MAPPING 45 2.6 ADVICE TO OBSERVERS 45 2.7
TERMINOLOGY: PRIMARY MINIMUM AND PRIMARY STAR . . 47 2.8 SELECTED
BIBLIOGRAPHY FOR CHAPTER 2 48 A GENERAL APPROACH TO MODELING ECLIPSING
BINARIES 49 3.1 SYSTEM GEOMETRY 51 3.1.1 COORDINATES AND BASIC
GEOMETRICAL QUANTITIES ... 52 3.1.2 DYNAMICAL ASPECTS AND ORBITS 57
3.1.3 SPHERICAL MODELS 64 3.1.4 ELLIPSOIDAL MODELS 67 3.1.5 ROCHE
GEOMETRY AND EQUIPOTENTIAL SURFACES . . . . 70 3.1.6 BINARY STAR
MORPHOLOGY -. 84 3.2 MODELING STELLAR RADIATIVE PROPERTIES 89 3.2.1
GRAVITY BRIGHTENING 91 3.2.2 STELLAR ATMOSPHERE MODELS 94 3.2.3 ANALYTIC
APPROXIMATIONS FOR COMPUTING INTENSITIES 94 3.2.4 CENTER-TO-LIMB
VARIATION 95 3.2.5 REFLECTION EFFECT 98 3.2.6 INTEGRATED MONOCHROMATIC
FLUX 103 3.3 MODELING ASPECT AND ECLIPSES 104 3.4 SOURCES AND TREATMENT
OF PERTURBATIONS 106 3.4.1 THIRD LIGHT 106 3.4.2 STAR SPOTS AND OTHER
PHENOMENA OF ACTIVE REGIONS 108 3.4.3 ATMOSPHERIC ECLIPSES ILL 3.4.4
CIRCUMSTELLAR MATTER IN BINARIES 112 3.5 MODELING RADIAL VELOCITY CURVES
122 3.6 MODELING LINE PROFILES 126 3.7 MODELING POLARIZATION CURVES 127
CONTENTS XIX 3.8 MODELING PULSE ARRIVAL TIMES 131 3.9 SELF-CONSISTENT
TREATMENT OF PARALLAXES 132 3.10 CHROMOSPHERIC AND CORONAL MODELING 133
3.11 SELECTED BIBLIOGRAPHY FOR CHAPTER 3 135 4 DETERMINATION OF
ECLIPSING BINARY PARAMETERS 137 4.1 MATHEMATICAL FORMULATION OF THE
INVERSE PROBLEM 138 4.1.1 THE INVERSE PROBLEM FROM THE ASTRONOMER S
PERSPECTIVE 141 4.2 A BRIEF REVIEW OF NONLINEAR LEAST-SQUARES PROBLEMS .
. . 152 4.2.1 NONLINEAR UNCONSTRAINED LEAST-SQUARES METHODS . . 152
4.2.2 NONLINEAR CONSTRAINED LEAST SQUARES METHODS . . . 153 4.3 LEAST
SQUARES TECHNIQUES USED IN ECLIPSING BINARY DATA ANALYSIS 155 4.3.1 A
CLASSICAL APPROACH: DIFFERENTIAL CORRECTIONS . . . 155 4.3.2 MULTIPLE
SUBSET METHOD AND INTERACTIVE BRANCHING 158 4.3.3 DAMPED DIFFERENTIAL
CORRECTIONS 159 4.3.4 AVOIDING DERIVATIVES: THE SIMPLEX ALGORITHM . . .
160 4.3.5 OTHER APPROACHES 165 4.4 A PRIORI AND A POSTERIORI STEPS IN
LIGHT CURVE ANALYSIS . 166 4.4.1 ESTIMATING INITIAL PARAMETERS 166 4.4.2
CRITERIA FOR TERMINATING ITERATIONS 170 4.4.3 THE INTERPRETATION OF
ERRORS DERIVED FROM FITTING 172 4.4.4 CALCULATING ABSOLUTE STELLAR
PARAMETERS FROM A LIGHT CURVE SOLUTION 173 4.5 SUGGESTIONS FOR IMPROVING
PERFORMANCE 178 4.5.1 UTILIZING SYMMETRY PROPERTIES 178 4.5.2
INTERPOLATION TECHNIQUES . 179 4.5.3 SURFACE GRID DESIGN *-.*** 180
4.5.4 ANALYTIC PARTIAL DERIVATIVES 181 4.5.5 ACCURATE FINITE DIFFERENCE
APPROXIMATION 183 4.6 SELECTED BIBLIOGRAPHY FOR CHAPTER 4 184 5 LIGHT
CURVE MODELS AND SOFTWARE 185 5.1 DISTINCTION BETWEEN MODELS AND
PROGRAMS 185 5.2 SYNTHETIC LIGHT CURVE MODELS 186 5.2.1 THE
RUSSELL-MERRILL MODEL AND TECHNIQUE 186 5.2.2 THE ECLIPSING BINARY
ORBIT PROGRAM EBDP . . . . 194 5.2.3 THE WOOD MODEL AND THE WINK
PROGRAM 197 5.3 PHYSICAL MODELS: ROCHE GEOMETRY BASED PROGRAMS . . . .
198 5.3.1 BINNENDIJK S MODEL 198 5.3.2 HADRAVA S PROGRAM FOTEL 199 5.3.3
HILL S MODEL 199 XX CONTENTS 5.3.4 LINNELL S MODEL 200 5.3.5 RUCINSKI S
MODEL 203 5.3.6 WILSON-DEVINNEY S MODEL 204 5.4 CHEREPASHCHUK S MODEL
208 5.5 OTHER APPROACHES 214 5.5.1 BUDDING S ECLIPSING BINARY MODEL 214
5.5.2 KOPAL S FREQUENCY DOMAIN METHOD 214 5.5.3 MOCHNACKI S GENERAL
SYNTHESIS CODE, GENSYN . . . . 217 5.5.4 COLLIER-MOCHNACKI-HENDRY GDDSYN
SPOTTED GENERAL SYNTHESIS CODE 218 5.6 SELECTED BIBLIOGRAPHY FOR CHAPTER
5 218 6 THE WILSON-DEVINNEY PROGRAM AND WD95 219 6.1 CURRENT
CAPABILITIES OF WD95 220 6.2 ATMOSPHERIC OPTIONS 220 6.3 APPLICATIONS
AND EXTENSIONS 221 6.3.1 THE ECLIPSING X-RAY BINARY HD 77581/VELA X-L .
221 6.3.2 THE ECLIPSING BINARIES IN NGC 5466 222 6.3.3 THE BINARY H235
IN THE OPEN CLUSTER NGC 752 . . 226 6.3.4 THE FIELD BINARY V728 HERCULIS
227 6.3.5 THE ECLIPSING BINARIES IN M71 229 6.3.6 THE WELL-STUDIED
SYSTEM AI PHOENICIS 229 6.3.7 FITTING OF LINE PROFILES 232 6.4 THE
FUTURE 232 7 THE STRUCTURE OF LIGHT CURVE PROGRAMS AND THE OUTLOOK FOR
THE FUTURE 235 7.1. STRUCTURE OF A GENERAL LIGHT CURVE ANALYSIS PROGRAM
. . . 235 7.1.1 FRAMEWORK OF THE LIGHT CURVE MODELS 236 7.1.2 FRAMEWORK
TO EMBED LEAST SQUARES SOLVERS . . . . 237 7.2 PROCEDURAL PHILOSOPHIES
. ... 239 7.3 CODE MAINTENANCE AND MODIFICATION 240 7.4 PROSPECTS AND
EXPECTATIONS 241 APPENDICES A A BRIEF REVIEW OF MATHEMATICAL
OPTIMIZATION * 243 A.I UNCONSTRAINED OPTIMIZATION 244 A.2 CONSTRAINED
OPTIMIZATION 248 A.2.1 FOUNDATIONS AND SOME THEOREMS 248 A. 2.2
SEQUENTIAL QUADRATIC ALGORITHMS 251 A.3 UNCONSTRAINED LEAST-SQUARES
PROCEDURES 252 A.3.1 THE LINEAR CASE: THE NORMAL EQUATIONS 253 A.3.2 THE
LINEAR CASE: AN ORTHOGONALIZATION METHOD . . 254 A.3.3 THE NONLINEAR
CASE: A GAUFI-NEWTON METHOD ... 256 A.4 CONSTRAINED LEAST-SQUARES
PROCEDURES 259 CONTENTS XXI A.5 SELECTED BIBLIOGRAPHY FOR APPENDIX A 259
B ESTIMATION OF FITTED PARAMETER ERRORS: THE DETAILS 261 B.I THE
KOLMOGOROFF-SMIRNOV TEST 261 B.2 SENSITIVITY ANALYSIS AND THE USE OF
SIMULATED LIGHT CURVES 262 B.3 DERIVING BOUNDS FOR PARAMETERS: THE GRID
APPROACH . . . 263 C GEOMETRY AND COORDINATE SYSTEMS 265 C.I ROTATION OF
COORDINATE SYSTEMS 265 C.2 VOLUME AND SURFACE ELEMENTS IN SPHERICAL
COORDINATES^. . 267 C.3 ROCHE COORDINATES 270 C.4 SOLVING KEPLER S
EQUATION 271 D THE RUSSELL-MERRILL MODEL 273 D.I ELLIPTICITY CORRECTION
IN THE RUSSELL-MERRILL MODEL 273 E SUBROUTINES OF THE WILSON*DEVINNEY
PROGRAM 277 E.I ATM: INTERFACING STELLAR MODEL ATMOSPHERES 278 E.2 BBL:
BASIC BLOCK 278 E.3 BOLO: BOLOMETRIC CORRECTIONS 278 E.4 DURA:
CONSTRAINT ON X-RAY ECLIPSE DURATION 279 E.5 ELLONE: LAGRANGIAN POINTS
AND CRITICAL POTENTIALS . . . . 279 E.6 FOUR: REPRESENTING ECLIPSE
HORIZON 281 E.7 KEPLER: SOLVING THE KEPLER EQUATION 281 E.8 LC AND DC:
THE MAIN PROGRAMS 282 E.9 LCR: ASPECT INDEPENDENT SURFACE COMPUTATIONS
282 E.10 LIGHT: PROJECTIONS, HORIZON, AND ECLIPSE EFFECTS 283 E.LL LUM:
SCALING OF POLAR NORMAL INTENSITY 284 E.12 LUMP: MODELING MULTIPLE
REFLECTION 285 E.13 MLRG: COMPUTING ABSOLUTE DIMENSIONS 286 E.14 MODLOG:
HANDLING CONSTRAINTS EFFICIENTLY . . 286 E.15 NEKMIN: BOUNDARY PLANE FOR
THE CONNECTING SURFACE OF OVER-CONTACT BINARIES 286 E.16 OLUMP: MODELING
THE REFLECTION EFFECT 286 E.17 OMEGA*: COMPUTING FL(R) 294 E.18 READLC*:
READING PROGRAM CONTROL PARAMETERS 295 E.19 RING: THE INTERFACE RING OF
AN OVER-CONTACT BINARY ... 295 E.20 ROMQSP: COMPUTING ASSOCIATED
QUANTITIES AT SURFACE POINT 296 E.21 SIMPLEX*: SIMPLEX ALGORITHM 296
E.22 SQUARE: BUILDING AND SOLVING THE NORMAL EQUATIONS . . 296 E.23
SPOT: MODELING SPOTS 296 E.24 SSR*: COMPUTATION OF CURVES AND RESIDUALS
297 E.25 SURFAS: GENERATING THE SURFACES OF THE COMPONENTS . . . 297
E.26 VOLUME: KEEPING STELLAR VOLUME CONSTANT 297 XXII CONTENTS F
GRAPHICS UTILITIES AND VISUALIZATION 299 F.I BINARY MAKER 299 F.2
WILSON-GRAPHIC INTERFACE 300 F.3 GRAPHICS PACKAGES 304 G GLOSSARY OF
SYMBOLS 307 BIBLIOGRAPHY 315 SUBJECT INDEX 345
|
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author | Kallrath, Josef Milone, Eugene F. 1939- |
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dewey-raw | 523.8/444 |
dewey-search | 523.8/444 |
dewey-sort | 3523.8 3444 |
dewey-tens | 520 - Astronomy and allied sciences |
discipline | Physik |
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id | DE-604.BV012782972 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:33:36Z |
institution | BVB |
isbn | 0387986227 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-008694025 |
oclc_num | 43280063 |
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owner | DE-19 DE-BY-UBM DE-634 DE-29T |
owner_facet | DE-19 DE-BY-UBM DE-634 DE-29T |
physical | XXVIII, 355 S. Ill., graph. Darst. |
publishDate | 1999 |
publishDateSearch | 1999 |
publishDateSort | 1999 |
publisher | Springer |
record_format | marc |
spelling | Kallrath, Josef Verfasser (DE-588)1042215855 aut Eclipsing binary stars modeling and analysis Josef Kallrath ; Eugene F. Milone New York [u.a.] Springer 1999 XXVIII, 355 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Binaire à éclipses obspm Dubbelsterren gtt Eclipsen gtt Etoiles doubles photomériques ram Eclipsing binaries Light curves Lichtkurve (DE-588)4306547-8 gnd rswk-swf Bedeckungsveränderlicher (DE-588)4144255-6 gnd rswk-swf Bedeckungsveränderlicher (DE-588)4144255-6 s Lichtkurve (DE-588)4306547-8 s DE-604 Milone, Eugene F. 1939- Verfasser (DE-588)121271323 aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008694025&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Kallrath, Josef Milone, Eugene F. 1939- Eclipsing binary stars modeling and analysis Binaire à éclipses obspm Dubbelsterren gtt Eclipsen gtt Etoiles doubles photomériques ram Eclipsing binaries Light curves Lichtkurve (DE-588)4306547-8 gnd Bedeckungsveränderlicher (DE-588)4144255-6 gnd |
subject_GND | (DE-588)4306547-8 (DE-588)4144255-6 |
title | Eclipsing binary stars modeling and analysis |
title_auth | Eclipsing binary stars modeling and analysis |
title_exact_search | Eclipsing binary stars modeling and analysis |
title_full | Eclipsing binary stars modeling and analysis Josef Kallrath ; Eugene F. Milone |
title_fullStr | Eclipsing binary stars modeling and analysis Josef Kallrath ; Eugene F. Milone |
title_full_unstemmed | Eclipsing binary stars modeling and analysis Josef Kallrath ; Eugene F. Milone |
title_short | Eclipsing binary stars |
title_sort | eclipsing binary stars modeling and analysis |
title_sub | modeling and analysis |
topic | Binaire à éclipses obspm Dubbelsterren gtt Eclipsen gtt Etoiles doubles photomériques ram Eclipsing binaries Light curves Lichtkurve (DE-588)4306547-8 gnd Bedeckungsveränderlicher (DE-588)4144255-6 gnd |
topic_facet | Binaire à éclipses Dubbelsterren Eclipsen Etoiles doubles photomériques Eclipsing binaries Light curves Lichtkurve Bedeckungsveränderlicher |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008694025&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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