Remnant planetesimals and their collisional fragments: physical characterization from thermal–infrared observations
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Format: | Abschlussarbeit Buch |
Sprache: | English |
Veröffentlicht: |
2013
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Online-Zugang: | Volltext Inhaltsverzeichnis |
Beschreibung: | Nebentitel: Überreste der Planetesimale und ihre Bruchstücke |
Beschreibung: | XXII, 300 S. Ill., graph. Darst. |
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245 | 1 | 0 | |a Remnant planetesimals and their collisional fragments |b physical characterization from thermal–infrared observations |c vorgelegt von Michael Mommert |
246 | 1 | 3 | |a Überreste der Planetesimale und ihre Bruchstücke |
264 | 1 | |c 2013 | |
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adam_text | IMAGE 1
CONTENTS
LIST OF FIGURES XVII
LIST OF TABLES XXI
1 INTRODUCTION 1
1.1 SMALL BODIES IN THE SOLAR SYSTEM 2
1.1.1 HISTORICAL INTRODUCTION 2
1.1.2 THE ASTEROID MAIN BELT 4
1.1.2.1 DYNAMICAL STRUCTURE 6
1.1.2.2 ORIGIN AND EVOLUTION 7
1.1.3 NEAR-EARTH OBJECTS (NEOS) 8
1.1.3.1 ORBITAL CLASSIFICATION 9
1.1.3.2 ORIGIN AND EVOLUTION 10
1.1.3.3 IMPACT HAZARD 10
1.1.4 TRANS-NEPTUNIAN OBJECTS (TNOS) 11
1.1.4.1 DYNAMICAL STRUCTURE 13
1.1.4.2 ORIGIN AND EVOLUTION 15
1.1.5 COMETS 16
1.1.5.1 DYNAMICAL STRUCTURE 16
1.1.5.2 ORIGIN AND EVOLUTION 18
1.2 PHYSICAL PROPERTIES OF SMALL BODIES 19
1.2.1 BRIGHTNESS 19
1.2.1.1 APPARENT MAGNITUDE 19
1.2.1.2 COLOR INFORMATION 19
1.2.1.3 ABSOLUTE MAGNITUDE AND PHASE CURVE 20
1.2.1.4 OBSERVATIONAL BIAS 22
1.2.2 SIZE AND ALBEDO 22
1.2.2.1 ALBEDO 22
1.2.2.2 EFFECTIVE DIAMETER 23
1.2.2.3 SIZE AND LUMINOSITY DISTRIBUTIONS 23
1.2.3 LIGHTCURVE EFFECTS - ROTATION, SHAPE AND BINARITY 26
IX
HTTP://D-NB.INFO/1043185941
IMAGE 2
1.2.3.1 SHAPE 26
1.2.3.2 BINARITY 26
1.2.4 TAXONOMY 28
1.2.4.1 NEOS AND MAIN BELT ASTEROIDS 28
1.2.4.2 TNOS 31
1.2.5 SURFACE ROUGHNESS AND OTHER SURFACE PROPERTIES 31
1.2.5.1 NEOS AND MAIN BELT ASTEROIDS 31
1.2.5.2 TNOS 33
1.2.5.3 COMETS 34
1.2.6 INTERNAL STRUCTURE AND BULK DENSITY 35
1.2.7 THERMAL PROPERTIES 35
1.3 MOTIVATION AND SCOPE OF THIS WORK 39
1.3.1 EXPLORENEOS , TNOS ARE COOL! AND THE BIG PICTURE OF SMALL
BODIES IN THE SOLAR SYSTEM 39
1.3.2 SCOPE OF THIS WORK 41
1.3.2.1 PRIMARY AIMS 41
1.3.2.2 SECONDARY AIMS 42
2 OBSERVATIONS OF SMALL BODIES 43
2.1 OBSERVATIONS IN DIFFERENT WAVELENGTH REGIMES 44
2.1.1 OBSERVATIONS IN THE OPTICAL 44
2.1.2 OBSERVATIONS IN THE THERMAL-INFRARED 45
2.1.2.1 SPACE-BASED INFRARED OBSERVATIONS 47
2.2 THE SPITZER SPACE TELESCOPE 48
2.2.1 SPITZER OVERVIEW 48
2.2.1.1 SPACECRAFT DESIGN 48
2.2.1.2 SPITZER S ORBIT 49
2.2.1.3 SPITZER DATA PRODUCTS 51
2.2.1.4 SPITZER S WARM MISSION - WARM SPITZER 51
2.2.2 SCIENTIFIC INSTRUMENTS 52
2.2.2.1 THE INFRARED ARRAY CAMERA (IRAC) 52
2.2.2.2 THE MULTIBAND IMAGING PHOTOMETER FOR SPITZER (MIPS) . . 54
2.2.2.3 THE INFRARED SPECTROGRAPH (IRS) 56
2.2.3 EXPLORENEOS : THE WARM SPITZER NEO SURVEY 56
2.2.3.1 GOALS 56
2.2.3.2 DATA ACQUISITION 56
2.2.3.3 STATUS 58
2.3 THE WIDE-FIELD INFRARED SURVEY EXPLORER 59
2.3.1 THE WISE MISSION 59
2.3.2 THE NEOWISE PROGRAM 59
X
IMAGE 3
2.4 THE HERSCHEL SPACE OBSERVATORY 61
2.4.1 HERSCHEL OVERVIEW 61
2.4.1.1 SPACECRAFT DESIGN 61
2.4.1.2 HERSCHEL S ORBIT 62
2.4.1.3 HERSCHEL DATA PRODUCTS 62
2.4.2 SCIENTIFIC INSTRUMENTS 63
2.4.2.1 THE PHOTODETECTOR ARRAY CAMERA AND SPECTROMETER (PACS) 63
2.4.2.2 THE SPECTRAL AND PHOTOMETRIC IMAGING RECEIVER (SPIRE) 65
2.4.2.3 THE HETERODYNE INSTRUMENT FOR THE FAR-INFRARED (HIFI) . . 66
2.4.3 TNOS ARE COOL! : A SURVEY OF THE TRANS-NEPTUNIAN REGION .... 66
2.4.3.1 GOALS 66
2.4.3.2 DATA ACQUISITION 66
2.4.3.3 STATUS 67
3 THERMAL MODELING 69
3.1 THERMAL EMISSION OF ATMOSPHERELESS BODIES 70
3.2 BASIC THERMAL MODELS 71
3.2.1 MODEL PARAMETERS AND THE MODELING ROUTINE 71
3.2.2 THE STANDARD THERMAL MODEL (STM) 74
3.2.3 THE FAST-ROTATING MODEL (FRM) 77
3.2.4 THE NEAR-EARTH ASTEROID THERMAL MODEL (NEATM) 78
3.3 UNCERTAINTY ASSESSMENT 81
3.4 MODEL IMPLEMENTATION - THE MODEL SOFTWARE 83
3.5 THE PHYSICAL MEANING OF THE BEAMING PARAMETER RJ 86
3.6 THE ACCURACY AND LIMITS OF THERMAL MODELING 88
3.7 THERMAL MODELING CAVEATS 89
3.7.1 THERMAL MODELS FOR NEOS 89
3.7.1.1 REFLECTED SOLAR LIGHT 89
3.7.1.2 LARGE SOLAR PHASE ANGLES 90
3.7.2 THERMAL MODELS FOR TNOS 90
3.7.2.1 WAVELENGTH-DEPENDENT EMISSIVITY 91
3.7.2.2 PHASE INTEGRAL 91
3.7.2.3 OPPOSITION SURGE 91
4 EXPLORENEOS RESULTS 93
4.1 COMPARING THE PHYSICAL PROPERTIES OF NEOS AND THEIR SOURCE
POPULATIONS . 94
4.1.1 PREREQUISITES 94
4.1.1.1 NEO ALBEDOS 94
4.1.1.2 MODEL PREDICTIONS 95
4.1.1.3 SOURCE POPULATION ALBEDOS 96
XI
IMAGE 4
4.1.2 ALBEDO DATA 97
4.1.3 RESULTS 98
4.1.4 DISCUSSION 101
4.1.4.1 COMPARISON OF THE AVERAGE ALBEDOS 101
4.1.4.2 COMPARISON OF THE INDIVIDUAL ALBEDO DISTRIBUTIONS .... 101
4.1.5 CONCLUSIONS 105
4.2 ASSESSMENT OF THE COMETARY CONTRIBUTION TO THE NEO POPULATION 106
4.2.1 INTRODUCTION 106
4.2.1.1 IDENTIFICATION OF COMETARY OBJECTS 107
4.2.1.2 ALBEDO SAMPLE 108
4.2.2 PRELIMINARY CONSIDERATIONS 109
4.2.3 RESULTS 113
4.2.4 DISCUSSION - 119
4.2.4.1 ASSESSMENT OF THE SIZE-LIMITED FRACTION OF COMETARY OB
JECTS IN THE NEO POPULATION 119
4.2.4.2 DISCUSSION OF THE PREREQUISITES 121
4.2.4.3 COMPARISON WITH OTHER WORKS 122
4.2.4.4 HIGH ALBEDOS AMONG THE LOW -TJ NEOS 123
4.2.4.5 INDIVIDUAL OBJECTS 124
4.2.5 CONCLUSIONS 125
4.3 THE DISCOVERY OF COMETARY ACTIVITY IN NEO (3552) DON QUIXOTE 126
4.3.1 INTRODUCTION 126
4.3.2 OBSERVATIONS AND DATA REDUCTION 127
4.3.2.1 SPITZER IRAC OBSERVATIONS 127
4.3.2.2 ADDITIONAL OBSERVATION DATA 129
4.3.3 SPITZER/IRAC DATA ANALYSIS 132
4.3.3.1 EMISSION FROM THE NUCLEUS 132
4.3.3.2 EMISSION FROM THE COMA AND THE TAIL 132
4.3.3.3 THERMAL MODELING OF THE NUCLEUS 134
4.3.4 DISCUSSION 135
4.3.4.1 DISCUSSION OF THE SPITZER IRAC DATA 135
4.3.4.2 CONSTRAINING THE NATURE OF THE EMISSION 137
4.3.4.3 GAS AND DUST PRODUCTION RATES 137
4.3.4.4 CONSTRAINTS FROM ADDITIONAL DATA 139
4.3.4.5 CAUSE AND LONGEVITY OF THE ACTIVITY 141
4.3.4.6 IMPLICATIONS 142
4.3.5 CONCLUSIONS 142
XII
IMAGE 5
5 TNOS ARE COOL! RESULTS 145
5.1 PHYSICAL CHARACTERIZATION OF 18 PLUTINOS 146
5.1.1 INTRODUCTION 146
5.1.2 OBSERVATIONS AND DATA REDUCTION 146
5.1.3 THERMAL MODELING 148
5.1.4 RESULTS 148
5.1.5 DISCUSSION 148
5.1.6 CORRELATIONS 151
5.1.7 CONCLUSIONS 154
5.2 THE SIZE AND ALBEDO DISTRIBUTIONS OF THE KNOWN TNO SUBPOPULATIONS .
. .156
5.2.1 METHOD 156
5.2.1.1 ALBEDO PROBABILITY DENSITY FUNCTION (PDF) 157
5.2.2 PREREQUISITES 160
5.2.2.1 ABSOLUTE MAGNITUDES AND DYNAMICAL CLASSIFICATION .... 160
5.2.2.2 ALBEDO DATA 161
5.2.3 RESULTS 164
5.2.4 DISCUSSION 166
5.2.4.1 INDIVIDUAL SIZE DISTRIBUTIONS 166
5.2.4.2 ROBUSTNESS OF THE SUBPOPULATION CLASSIFICATION 171
5.2.4.3 ROBUSTNESS OF THE METHOD 171
5.2.4.4 ROBUSTNESS OF THE ALBEDO DISTRIBUTION 172
5.2.4.5 IMPACT OF BIAS 172
5.2.4.6 COMPARISON WITH SIZE DISTRIBUTIONS FROM THE LITERATURE . . 173
5.2.4.7 THE ORIGIN OF THE JUPITER FAMILY COMETS (JFCS) 174
5.2.5 CONCLUSIONS 175
5.3 CORRELATIONS OF MEASURED ALBEDOS WITH THE TNO TAXONOMY AND THE PRES
ENCE OF ICES 176
5.3.1 DATA 176
5.3.2 METHOD 177
5.3.3 RESULTS 177
5.3.4 DISCUSSION 179
5.3.4.1 ALBEDO CORRELATIONS WITH THE TNO TAXONOMY 179
5.3.4.2 ALBEDO CORRELATIONS WITH THE PRESENCE OF ICES 184
5.3.5 CONCLUSIONS 186
5.3.5.1 TNO TAXONOMY 186
5.3.5.2 PRESENCE OF ICES 186
6 DISCUSSION 187
6.1 IMPLICATIONS FOR OUR PICTURE OF THE SOLAR SYSTEM 188
6.1.1 NEAR-EARTH OBJECTS AND THEIR SOURCE POPULATIONS 188
XIII
IMAGE 6
6.1.1.1 COMPARING THE PHYSICAL PROPERTIES OF NEOS AND THEIR SOURCE
POPULATIONS (SECTION 4.1) 188
6.1.1.2 ASSESSMENT OF THE COMETARY CONTRIBUTION TO THE NEO
POPULATION (SECTION 4.2) 189
6.1.1.3 THE DISCOVERY OF COMETARY ACTIVITY IN (3552) DON QUIXOTE
(SECTION 4.3) 190
6.1.2 TRANS-NEPTUNIAN OBJECTS AND SHORT-PERIOD COMETS 191
6.1.2.1 THE PHYSICAL CHARACTERIZATION OF 18 PLUTINOS (SECTION 5.1) 191
6.1.2.2 THE SIZE AND ALBEDO DISTRIBUTIONS OF THE KNOWN TNO
SUBPOPULATIONS (SECTION 5.2) 192
6.1.2.3 CORRELATIONS OF MEASURED ALBEDOS WITH THE TNO TAXON
OMY AND THE PRESENCE OF ICES (SECTION 5.3) 193
6.2 FUTURE WORK 194
6.2.1 NEAR-EARTH OBJECTS 194
6.2.2 TRANS-NEPTUNIAN OBJECTS 195
6.2.3 NEW APPROACHES IN THERMAL MODELING 195
6.2.3.1 THE TILTED THERMAL ASTEROID MODEL - TITAM 195
7 CONCLUSIONS 201
BIBLIOGRAPHY 205
INDEX 223
ACKNOWLEDGMENTS 227
APPENDIX 229
A SUPPLEMENTARY MATERIAL 229
A.L IMPORTANT CONCEPTS OF CELESTIAL MECHANICS 230
A.1.1 GEOMETRIC PARAMETERS 230
A.1.2 ORBITAL ELEMENTS 230
A. 1.2.1 SHAPE OF THE ORBIT 230
A. 1.2.2 ORIENTATION IN SPACE 232
A.1.2.3 POSITION IN THE ORBIT AS A FUNCTION OF TIME 232
A.1.2.4 OSCULATING VS. PROPER ELEMENTS 233
A. 1.3 MORE ADVANCED DYNAMICAL CONCEPTS 233
A.1.3.1 THE TISSERAND PARAMETER 233
A.1.3.2 DYNAMICAL RESONANCES 234
A.2 BASIC OBSERVATIONAL AND IMAGE ANALYSIS CONCEPTS 236
A.2.1 OBSERVATION TECHNIQUES 236
XIV
IMAGE 7
A.2.1.1 DIRECT IMAGING 236
A.2.1.2 SPECTROSCOPIC OBSERVATIONS 237
A.2.2 IMAGE ANALYSIS 237
A.2.2.1 APERTURE PHOTOMETRY 237
A.2.2.2 COLOR CORRECTION 238
A.2.2.3 PHOTOMETRIC UNCERTAINTIES AND THE SIGNAL-TO-NOISE RATIO . 239
B RELATED WORK 241
B.L ASSESSMENT OF THE ACCURACY OF THE EXPLORENEOS RESULTS 242
B.L.L MONTE-CARLO UNCERTAINTY ASSESSMENT 242
B.L.1.1 METHOD - 242
B.L. 1.2 RESULTS AND DISCUSSION 243
B.L. 1.3 CONCLUSIONS 243
B.L.2 COMPARISON WITH NEOWISE RESULTS 244
B.L.2.1 METHOD 244
B.L.2.2 RESULTS 246
B.L.2.3 DISCUSSION 247
B.L.2.4 CONCLUSIONS 249
B.2 EXPLORATION OF THE THERMAL MODEL UNCERTAINTIES 250
B.2.1 DIAMETER UNCERTAINTIES 250
B.2.2 ALBEDO UNCERTAINTIES 251
B.2.3 AN ANALYTICAL UNCERTAINTY MODEL 255
B.2.4 CONCLUSIONS 257
B.3 THE MIPSKBOS PROJECT 258
B.3.1 MIPSKBOS : MIPS OBSERVATIONS OF TNOS AND CENTAURS 258
B.3.2 THE MULTIBAND IMAGING PHOTOMETER FOR SPITZER (MIPS) 259
B.3.3 THE MIPSKBOS PIPELINE 261
B.3.4 DISCUSSION AND PRELIMINARY RESULTS 265
C PUBLICATIONS 267
C.L LIST OF PUBLICATIONS 268
C.2 PHYSICAL CHARACTERIZATION OF 18 PLUTINOS USING PACS OBSERVATIONS 280
D CURRICULUM VITAE 299
XV
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publishDateSort | 2013 |
record_format | marc |
spelling | Mommert, Michael 1982- Verfasser (DE-588)1036943879 aut Remnant planetesimals and their collisional fragments physical characterization from thermal–infrared observations vorgelegt von Michael Mommert Überreste der Planetesimale und ihre Bruchstücke 2013 XXII, 300 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Nebentitel: Überreste der Planetesimale und ihre Bruchstücke Berlin, Freie Univ., Diss., 2013 Planetesimal (DE-588)4584345-4 gnd rswk-swf Planet (DE-588)4046212-2 gnd rswk-swf Geodynamik (DE-588)4020212-4 gnd rswk-swf Geophysik (DE-588)4020252-5 gnd rswk-swf (DE-588)4113937-9 Hochschulschrift gnd-content Planet (DE-588)4046212-2 s Geodynamik (DE-588)4020212-4 s Planetesimal (DE-588)4584345-4 s Geophysik (DE-588)4020252-5 s DE-188 Erscheint auch als Online-Ausgabe urn:nbn:de:kobv:188-fudissthesis000000095090-3 http://www.diss.fu-berlin.de/diss/receive/FUDISS_thesis_000000095090 kostenfrei Volltext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=026737418&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Mommert, Michael 1982- Remnant planetesimals and their collisional fragments physical characterization from thermal–infrared observations Planetesimal (DE-588)4584345-4 gnd Planet (DE-588)4046212-2 gnd Geodynamik (DE-588)4020212-4 gnd Geophysik (DE-588)4020252-5 gnd |
subject_GND | (DE-588)4584345-4 (DE-588)4046212-2 (DE-588)4020212-4 (DE-588)4020252-5 (DE-588)4113937-9 |
title | Remnant planetesimals and their collisional fragments physical characterization from thermal–infrared observations |
title_alt | Überreste der Planetesimale und ihre Bruchstücke |
title_auth | Remnant planetesimals and their collisional fragments physical characterization from thermal–infrared observations |
title_exact_search | Remnant planetesimals and their collisional fragments physical characterization from thermal–infrared observations |
title_full | Remnant planetesimals and their collisional fragments physical characterization from thermal–infrared observations vorgelegt von Michael Mommert |
title_fullStr | Remnant planetesimals and their collisional fragments physical characterization from thermal–infrared observations vorgelegt von Michael Mommert |
title_full_unstemmed | Remnant planetesimals and their collisional fragments physical characterization from thermal–infrared observations vorgelegt von Michael Mommert |
title_short | Remnant planetesimals and their collisional fragments |
title_sort | remnant planetesimals and their collisional fragments physical characterization from thermal infrared observations |
title_sub | physical characterization from thermal–infrared observations |
topic | Planetesimal (DE-588)4584345-4 gnd Planet (DE-588)4046212-2 gnd Geodynamik (DE-588)4020212-4 gnd Geophysik (DE-588)4020252-5 gnd |
topic_facet | Planetesimal Planet Geodynamik Geophysik Hochschulschrift |
url | http://www.diss.fu-berlin.de/diss/receive/FUDISS_thesis_000000095090 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=026737418&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT mommertmichael remnantplanetesimalsandtheircollisionalfragmentsphysicalcharacterizationfromthermalinfraredobservations AT mommertmichael uberrestederplanetesimaleundihrebruchstucke |