Optical refrigeration science and applications of laser cooling of solids
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Wiley-VCH-Verl.
2009
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Datensatz im Suchindex
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adam_text | CONTENTS PREFAECE IX 1 OPTICAL REFRIGERATION IN SOLIDS: FUNDAMENTALS AND
OVERVIEW 1 RICHARD I. EPSTEIN AND MANSOOR SHEIK-BAHAE 1.1 BASIC CONCEPTS
1 1.2 THE FOUR-LEVEL MODEL FOR OPTICAL REFRIGERATION 4 1.3 COOLING
RARE-EARTH-DOPED SOLIDS 7 1.4 PROSPECTS FOR LASER COOLING IN
SEMICONDUCTORS 12 1.5 EXPERIMENTAL WORK ON OPTICAL REFRIGERATION IN
SEMICONDUCTORS 21 1.6 FUTURE OUTLOOK 26 REFERENCES 28 2 DESIGN AND
FABRICATION OF RARE-EARTH-DOPED LASER COOLING MATERIALS 33 MARKUS P.
HEHLEN 2.1 HISTORYOF LASER COOLING MATERIALS 33 2.2 MATERIAL DESIGN
CONSIDERATIONS 36 2.2.1 ACTIVE IONS 37 2.2.1.1 RARE-EARTH IONS FOR LASER
COOLING 37 2.2.1.2 ACTIVE ION CONCENTRATION 39 2.2.2 HOST MATERIALS 40
2.2.2.1 MULTIPHONON RELAXATION 40 2.2.2.2 CHEMICAL DURABILITY 42 2.2.2.3
THERMAL AND THERMOMECHANICAL PROPERTIES 42 2.2.2.4 REFRACTIVE INDEX 43
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/991653106 DIGITALISIERT
DURCH VI I CONTENTS 2.3.2.2 PROCESS EQUIPMENT 50 2.3.2.3 CLEAN
ENVIRONMENT 51 2.3.3 MATERIAL PURIFICATION 51 2.3.3.1 FILTRATION AND
RECRYSTALLIZATION 51 2.3.3.2 SOLVENT EXTRACTION USING CHELATING AGENTS
52 2.3.3.3 FLUORINATION AND DRYING IN HYDROGEN FLUORIDE GAS 54 2.3.3.4
SUBLIMATION AND DISTILLATION 55 2.3.3.5 ELECTROCHEMICAL PURIFICATION 57
2.3.4 DETERMINATION OF TRACE IMPURITY LEVELS 57 2.4 GLASS FABRICATION 59
2.4.1 GLASS FORMATION IN ZRF 4 SYSTEMS 59 2.4.2 ZBLAN GLASS FABRICATION
62 2.4.2.1 MELTING OF THE STARTING MATERIALS 62 2.4.2.2 EVAPORATIVE
LOSSES 63 2.4.2.3 DISSOLUTION AND HOMOGENIZARION 63 2.4.2.4 OPTIMUM RATE
OF COOLING 63 2.4.2.5 VISCOSITY FOR CASTING 64 2.4.2.6 TYPICAL GLASS
FABRICATION PARAMETERS 64 2.4.3 FLUORIDE, CHLORIDE, AND SULFIDE GLASS
FABRICATION 65 2.5 HALIDE CRYSTAL GROWTH 65 2.6 PROMISING FUTURE
MATERIALS 66 2.6.1 SIMPLIFIED FLUORIDE GLASSES 67 2.6.2 FLUORIDE
CRYSTALS 67 2.6.3 CHLORIDE AND BROMIDE CRYSTALS 68 REFERENCE CONTENTS
VII 4.2 INTERNAL COOLING MEASUREMENTS 101 4.3 BULK COOLING MEASUREMENTS
105 4.4 INFLUENCEOF UPCONVERSION PROCESSES ON THE COOLING EFFICIENCY OF
ER 3+ 108 4.4.1 SPECTROSCOPIC GROUNDS: UPCONVERSION PROPERTIES OF ER 3 *
UNDER PUMPING IN THE *I 9 SS MANIFOLD 108 4.4.2 A PHENOMENOLOGICAL
COOLING MODEL INCLUDING UPCONVERSION 111 REFERENCES 114 5 LASER
REFRIGERATOR DESIGN AND APPLICATIONS 117 GARY MILLS AND MEL BUCHWALD 5.1
INTRODUCTION 117 5.2 MODELING 119 5.3 MODELING RESULTS 121 5.4 DESIGN
ISSUES 124 5.5 MIRROR HEARING 129 5.6 APPLICATIONS 133 5.6.1 COMPARISON
TO OTHER REFRIGERATION TECHNOLOGIES 133 5.6.2 VIBRATION 133 5.6.3
ELECTROMAGNETIC AND MAGNETIC NOISE 134 5.6.4 RELIABILITY AND LIFETIME
134 5.6.5 RUGGEDNESS 134 5.6. VIII CONTENTS 7.2 ENGINEERING THE DENSITY
OF STATES USING DONOR-ACCEPTOR TRANSITIONS 171 7.3 REFRIGERATION USING
PHONON-ASSISTED TRANSITIONS 174 7.4 LASER COOLING USING TYPE II QUANTUM
WELLS 180 7.5 PHOTONIC BANDGAP FOR LASER COOLING 186 7.6 NOVEL MEANS OF
LASER COOLING USING SURFACE PLASMON POLARITONS 189 7.7 CONDUSIONS 193
REFERENCES 194 8 THERMODYNAMICS OF OPTICAL COOLING OF BULK MATTER 197
CARL E. MUNGAN 8.1 INTRODUCTION 197 8.2 HISTORICAL REVIEW OF OPTICAL
COOLING THERMODYNAMICS 198 8.3 QUANTITATIVE RADIATION THERMODYNAMICS 204
8.4 IDEALAND ACTUAL PERFORMANCE OF OPTICAL REFRIGERATORS 214 8.5 CLOSING
REMARKS 225 REFERENCES 230 INDEX 233
|
any_adam_object | 1 |
author2 | Epstein, Richard |
author2_role | edt |
author2_variant | r e re |
author_facet | Epstein, Richard |
building | Verbundindex |
bvnumber | BV035629257 |
callnumber-first | Q - Science |
callnumber-label | QC689 |
callnumber-raw | QC689.5.L35 |
callnumber-search | QC689.5.L35 |
callnumber-sort | QC 3689.5 L35 |
callnumber-subject | QC - Physics |
classification_rvk | UG 1200 UH 5790 |
ctrlnum | (OCoLC)302080495 (DE-599)DNB991653106 |
dewey-full | 536.56 530.41 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 536 - Heat 530 - Physics |
dewey-raw | 536.56 530.41 |
dewey-search | 536.56 530.41 |
dewey-sort | 3536.56 |
dewey-tens | 530 - Physics |
discipline | Physik |
edition | 1. Aufl. |
format | Book |
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genre_facet | Aufsatzsammlung |
id | DE-604.BV035629257 |
illustrated | Illustrated |
indexdate | 2024-12-23T22:04:58Z |
institution | BVB |
isbn | 9783527408764 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-017684242 |
oclc_num | 302080495 |
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owner_facet | DE-703 DE-11 |
physical | XV, 241 S. Ill., graph. Darst. |
publishDate | 2009 |
publishDateSearch | 2009 |
publishDateSort | 2009 |
publisher | Wiley-VCH-Verl. |
record_format | marc |
spellingShingle | Optical refrigeration science and applications of laser cooling of solids Laser cooling Laser manipulation (Nuclear physics) Solids Cooling Laserkühlung (DE-588)4297488-4 gnd Festkörper (DE-588)4016918-2 gnd |
subject_GND | (DE-588)4297488-4 (DE-588)4016918-2 (DE-588)4143413-4 |
title | Optical refrigeration science and applications of laser cooling of solids |
title_auth | Optical refrigeration science and applications of laser cooling of solids |
title_exact_search | Optical refrigeration science and applications of laser cooling of solids |
title_full | Optical refrigeration science and applications of laser cooling of solids ed. by Richard Epstein... |
title_fullStr | Optical refrigeration science and applications of laser cooling of solids ed. by Richard Epstein... |
title_full_unstemmed | Optical refrigeration science and applications of laser cooling of solids ed. by Richard Epstein... |
title_short | Optical refrigeration |
title_sort | optical refrigeration science and applications of laser cooling of solids |
title_sub | science and applications of laser cooling of solids |
topic | Laser cooling Laser manipulation (Nuclear physics) Solids Cooling Laserkühlung (DE-588)4297488-4 gnd Festkörper (DE-588)4016918-2 gnd |
topic_facet | Laser cooling Laser manipulation (Nuclear physics) Solids Cooling Laserkühlung Festkörper Aufsatzsammlung |
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work_keys_str_mv | AT epsteinrichard opticalrefrigerationscienceandapplicationsoflasercoolingofsolids |