Semiconductor optics: with 18 tables
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2012
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Ausgabe: | 4. ed. |
Schriftenreihe: | Graduate texts in physics
|
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XXVIII, 849 S. Ill., graph. Darst. |
ISBN: | 3642283616 9783642283611 |
Internformat
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245 | 1 | 0 | |a Semiconductor optics |b with 18 tables |c Claus F. Klingshirn |
250 | |a 4. ed. | ||
264 | 1 | |a Berlin [u.a.] |b Springer |c 2012 | |
300 | |a XXVIII, 849 S. |b Ill., graph. Darst. | ||
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Datensatz im Suchindex
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IMAGE 1
CONTENTS
1 INTRODUCTION 1
1.1 AIMS AND CONCEPTS 1
1.2 OUTLINE OF THE BOOK AND A LOT OF REFERENCES 2
1.3 SOME PERSONAL THOUGHTS 4
1.4 PROBLEMS 5
REFERENCES 6
2 MAXWELL'S EQUATIONS, PHOTONS AND THE DENSITY O F STATES 11
2.1 MAXWELL'S EQUATIONS 11
2.2 ELECTROMAGNETIC RADIATION IN VACUUM 14
2.3 ELECTROMAGNETIC RADIATION IN MATTER; LINEAR OPTICS 18
2.4 TRANSVERSE, LONGITUDINAL AND SURFACE WAVES 22
2.5 PHOTONS AND SOME ASPECTS OF QUANTUM MECHANICS AND OF DISPERSION
RELATIONS 23
2.6 DENSITY OF STATES AND OCCUPATION PROBABILITIES 28
2.7 PROBLEMS 35
REFERENCES 36
3 INTERACTION OF LIGHT WITH MATTER 39
3.1 MACROSCOPIC ASPECTS FOR SOLIDS 39
3.1.1 BOUNDARY CONDITIONS 39
3.1.2 LAWS OF REFLECTION AND REFRACTION 42
. 3.1.3 NOETHER'S THEOREM AND SOME ASPECTS OF CONSERVATION LAWS 44
3.1.4 REFLECTION AND TRANSMISSION AT AN INTERFACE AND FRESNEL'S FORMULAE
45
3.1.5 EXTINCTION AND ABSORPTION OF LIGHT 50
3.1.6 TRANSMISSION THROUGH A SLAB OF MATTER AND FABRY PEROT MODES 51
3.1.7 BIREFRINGENCE AND DICHROISM 54
3.1.8 OPTICAL ACTIVITY 63
XXI
HTTP://D-NB.INFO/1019143320
IMAGE 2
XXII CONTENTS
3.2 MICROSCOPIC ASPECTS 64
3.2.1 ABSORPTION, STIMULATED AND SPONTANEOUS EMISSION, VIRTUAL
EXCITATION 64
3.2.2 PERTURBATIVE TREATMENT OF THE LINEAR INTERACTION OF LIGHT WITH
MATTER 68
3.3 PROBLEMS 73
REFERENCES 74
4 ENSEMBLE OF UNCOUPLED OSCILLATORS 77
4.1 EQUATIONS OF MOTION AND THE DIELECTRIC FUNCTION 78
4.2 CORRECTIONS DUE TO QUANTUM MECHANICS AND LOCAL FIELDS 81 4.3 SPECTRA
OF THE DIELECTRIC FUNCTION AND OF THE COMPLEX INDEX OF REFRACTION 83
4.4 THE SPECTRA OF REFLECTION AND TRANSMISSION 89
4.5 INTERACTION OF CLOSE LYING RESONANCES 93
4.6 PROBLEMS 94
REFERENCES 95
5 THE CONCEPT OF POLARITONS 97
5.1 POLARITONS AS NEW QUASIPARTICLES 98
5.2 DISPERSION RELATION OF POLARITONS 100
5.3 POLARITONS IN SOLIDS, LIQUIDS AND GASES AND FROM THE IR TO THE X-RAY
REGION 105
5.3.1 COMMON OPTICAL PROPERTIES OF POLARITONS 105
5.3.2 HOW THE ^-VECTOR DEVELOPS 109
5.4 COUPLED OSCILLATORS AND POLARITONS WITH SPATIAL DISPERSION 113 5.4.1
DIELECTRIC FUNCTION AND THE POLARITON STATES WITH SPATIAL DISPERSION 115
5.4.2 REFLECTION AND TRANSMISSION AND ADDITIONAL BOUNDARY CONDITIONS 118
5.5 REAL AND IMAGINARY PARTS OF WAVE VECTOR AND FREQUENCY 122 5.6
SURFACE POLARITONS 123
5.7 PROBLEMS 125
REFERENCES 126
6 KRAMERS-KRONIG RELATIONS 129
6.1 GENERAL CONCEPTS 129
6.2 PROBLEM 133
REFERENCES 134
7 CRYSTALS, LATTICES, LATTICE VIBRATIONS AND PHONONS 135
7.1 ADIABATIC APPROXIMATION 135
7.2 LATTICES AND CRYSTAL STRUCTURES IN REAL AND RECIPROCAL SPACE 137 7.3
VIBRATIONS OF A STRING 142
7.4 LINEAR CHAINS 144
7.5 THREE-DIMENSIONAL CRYSTALS 150
IMAGE 3
CONTENTS XXIII
7.6 QUANTIZATION OF LATTICE VIBRATIONS:
PHONONS AND THE CONCEPT OF QUASIPARTICLES 151
7.7 THE DENSITY OF STATES AND PHONON STATISTICS 155
7.8 PHONONS IN ALLOYS 158
7.9 DEFECTS AND LOCALIZED PHONON MODES 159
7.10 PHONONS IN SUPERLATTICES AND IN OTHER STRUCTURES OF REDUCED
DIMENSIONALITY 161
7.11 PROBLEMS 165
REFERENCES 165
8 ELECTRONS IN A PERIODIC CRYSTAL 167
8.1 BLOCH'S THEOREM 168
8.2 METALS, SEMICONDUCTORS, INSULATORS 171
8.3 AN OVERVIEW OF SEMICONDUCTING MATERIALS 174
8.4 ELECTRONS AND HOLES IN CRYSTALS AS NEW QUASIPARTICLES 178
8.5 THE EFFECTIVE-MASS CONCEPT 180
8.6 THE POLARON CONCEPT AND OTHER ELECTRON-PHONON INTERACTION PROCESSES
184
8.7 SOME BASIC APPROACHES TO BAND STRUCTURE CALCULATIONS 187 8.8
BANDSTRUCTURES OF REAL SEMICONDUCTORS 196
8.9 DENSITY OF STATES, OCCUPATION PROBABILITY AND CRITICAL POINTS 203
8.10 ELECTRONS AND HOLES IN QUANTUM WELLS AND SUPERLATTICES 207 8.11
GROWTH OF QUANTUM WELLS AND OF SUPERLATTICES 217
8.12 QUANTUM WIRES 222
8.13 QUANTUM DOTS 224
8.14 DEFECTS, DEFECT STATES AND DOPING 228
8.15 DISORDERED SYSTEMS AND LOCALIZATION 233
8.16 PROBLEMS 243
REFERENCES 244
9 EXCITONS, BIEXCITONS AND TRIONS 249
9.1 WANNIER AND FRENKEL EXCITONS 250
9.2 CORRECTIONS TO THE SIMPLE EXCITON MODEL 255
9.3 THE INFLUENCE OF DIMENSIONALITY 258
9.4 BIEXCITONS AND TRIONS 263
9.5 BOUND EXCITON COMPLEXES 264
9.6 EXCITONS IN DISORDERED SYSTEMS 265
9.7 PROBLEMS 268
REFERENCES 269
10 PLASMONS, MAGNONS AND SOME FURTHER ELEMENTARY EXCITATIONS 273 10.1
PLASMONS, PAIR EXCITATIONS AND PLASMON-PHONON MIXED STATES 273
10.2 MAGNONS AND MAGNETIC POLARONS 279
10.3 PROBLEMS 280
REFERENCES 281
IMAGE 4
XXIV CONTENTS
11 OPTICAL PROPERTIES OF PHONONS 283
11.1 PHONONS IN BULK SEMICONDUCTORS 283
11.1.1 REFLECTION SPECTRA 283
11.1.2 RAMAN SCATTERING 285
11.1.3 PHONON POLARITONS 288
11.1.4 BRILLOUIN SCATTERING 290
11.1.5 SURFACE PHONON POLARITONS 290
11.1.6 PHONONS IN ALLOYS 292
11.1.7 DEFECTS AND LOCALIZED PHONON MODES 293
11.2 PHONONS IN SUPERLATTICES 293
11.2.1 BACKFOLDED ACOUSTIC PHONONS 294
11.2.2 CONFINED OPTIC PHONONS 294
11.2.3 INTERFACE PHONONS 295
11.3 PHONONS IN QUANTUM DOTS 297
11.4 PHONON DYNAMICS 297
11.5 PROBLEMS 298
REFERENCES 299
12 OPTICAL PROPERTIES OF PLASMONS, PLASMON-PHONON MIXED STATES AND OF
MAGNONS 301
12.1 SURFACE PLASMONS 301
12.2 PLASMON-PHONON MIXED STATES 303
12.3 PLASMONS IN SYSTEMS OF REDUCED DIMENSIONALITY 304
12.4 OPTICAL PROPERTIES OF MAGNONS 306
12.5 PROBLEMS 307
REFERENCES 307
13 OPTICAL PROPERTIES O F INTRINSIC EXCITONS IN BULK SEMICONDUCTORS 309
13.1 EXCITONS WITH STRONG OSCILLATOR STRENGTH 309
13.1.1 EXCITON-PHOTON COUPLING 310
13.1.2 CONSEQUENCES OF SPATIAL DISPERSION 313
13.1.3 SPECTRA OF REFLECTION, TRANSMISSION AND LUMINESCENCE 314
13.1.4 SPECTROSCOPY IN MOMENTUM SPACE 331
13.1.5 SURFACE-EXCITON POLARITONS 338
13.1.6 EXCITONS IN ORGANIC SEMICONDUCTORS AND IN INSULATORS. 339
13.1.7 OPTICAL TRANSITIONS ABOVE THE FUNDAMENTAL GAP AND CORE EXCITONS
342
13.2 FORBIDDEN EXCITON TRANSITIONS 346
13.2.1 DIRECT GAP SEMICONDUCTORS 347
13.2.2 INDIRECT GAP SEMICONDUCTORS 351
13.3 INTRAEXCITONIC TRANSITIONS 355
13.4 PROBLEMS 357
REFERENCES 358
IMAGE 5
CONTENTS XXV
14 OPTICAL PROPERTIES O F BOUND AND LOCALIZED EXCITONS AND
OF DEFECT STATES 363
14.1 BOUND-EXCITON AND MULTI-EXCITON COMPLEXES 363
14.2 DONOR-ACCEPTOR PAIRS AND RELATED TRANSITIONS 371
14.3 INTERNAL TRANSITIONS AND DEEP CENTERS 373
14.4 EXCITONS IN DISORDERED SYSTEMS 375
14.5 PROBLEMS 380
REFERENCES 380
15 OPTICAL PROPERTIES OF EXCITONS IN STRUCTURES O F REDUCED
DIMENSIONALITY 383
15.1 QANTUM WELLS 383
15.2 COUPLED QUANTUM WELLS AND SUPERLATTICES 393
15.3 QUANTUM WIRES 400
15.4 QUANTUM DOTS 403
15.5 PROBLEMS 415
REFERENCES 416
16 EXCITONS UNDER THE INFLUENCE O F EXTERNAL FIELDS 423
16.1 MAGNETIC FIELDS 424
16.1.1 NONMAGNETIC BULK SEMICONDUCTORS 426
16.1.2 DILUTED MAGNETIC BULK SEMICONDUCTORS 432
16.1.3 SEMICONDUCTOR STRUCTURES OF REDUCED DIMENSIONALITY. 434 16.1.4
SPIN INJECTION 437
16.2 ELECTRIC FIELDS 439
16.2.1 BULK SEMICONDUCTORS 439
16.2.2 SEMICONDUCTOR STRUCTURES OF REDUCED DIMENSIONALITY. 441 16.3
STRAIN FIELDS 445
16.3.1 BULK SEMICONDUCTORS 445
16.3.2 STRUCTURES OF REDUCED DIMENSIONALITY 448
16.4 PROBLEMS 450
REFERENCES 450
17 FROM CAVITY POLARITONS TO PHOTONIC CRYSTALS 457
17.1 CAVITY POLARITONS 457
17.1.1 THE EMPTY RESONATOR 457
17.1.2 CAVITY POLARITONS 460
17.2 PHOTONIC CRYSTALS AND PHOTONIC BAND GAP STRUCTURES 464
17.2.1 INTRODUCTION TO THE BASIC CONCEPTS 465
17.2.2 REALIZATION OF PHOTONIC CRYSTALS AND APPLICATIONS 469 17.3
PHOTONIC ATOMS, MOLECULES AND CRYSTALS 472
17.4 PRESENT AND FURTHER DEVELOPMENTS OF PHOTONIC CRYSTALS 476 17.5 A
FEW WORDS ABOUT METAMATERIALS 477
17.6 PROBLEMS 479
REFERENCES 480
IMAGE 6
XXVI CONTENTS
18 REVIEW OF THE LINEAR OPTICAL PROPERTIES 485
18.1 REVIEW OF THE LINEAR OPTICAL PROPERTIES 485
18.2 PROBLEM 487
REFERENCES 488
19 HIGH EXCITATION EFFECTS AND NONLINEAR OPTICS 491
19.1 INTRODUCTION AND DEFINITION 491
19.2 GENERAL SCENARIO FOR HIGH EXCITATION EFFECTS 500
19.3 BEYOND T H E A P P R O X I M A T I O N S 503
19.4 PROBLEMS 504
REFERENCES 505
20 THE INTERMEDIATE DENSITY REGIME 507
20.1 TWO-PHOTON ABSORPTION BY EXCITONS 507
20.2 ELASTIC AND INELASTIC SCATTERING PROCESSES 508
20.3 BIEXCITONS AND TRIONS 513
20.3.1 BULK SEMICONDUCTORS 513
20.3.2 STRUCTURES OF REDUCED DIMENSIONALITY 522
20.4 OPTICAL OR AC STARK EFFECT 528
20.5 EXCITONIC BOSE-EINSTEIN CONDENSATION 531
20.5.1 BASIC PROPERTIES 532
20.5.2 ATTEMPTS TO FIND BEC IN BULK SEMICONDUCTORS 534 20.5.3 STRUCTURES
OF REDUCED DIMENSIONALITY 539
20.5.4 DRIVEN EXCITONIC BOSE-EINSTEIN CONDENSATIONS AND SOME FURTHER
SYSTEMS 547
20.6 PHOTO-THERMAL OPTICAL NONLINEARITIES 549
20.7 PROBLEMS 550
REFERENCES 551
21 THE ELECTRON-HOLE PLASMA 561
21.1 THE MOTT DENSITY 561
21.2 BAND GAP RENORMALIZATION AND PHASE DIAGRAM 567
21.3 ELECTRON-HOLE PLASMAS IN BULK SEMICONDUCTORS 574
21.3.1 INDIRECT GAP MATERIALS 574
21.3.2 ELECTRON-HOLE PLASMAS IN DIRECT-GAP SEMICONDUCTORS. 577 21.4
ELECTRON-HOLE PLASMA IN STRUCTURES OF REDUCED DIMENSIONALITY 587
21.5 INTER-SUBBAND TRANSITIONS IN UNIPOLAR AND BIPOLAR PLASMAS 590
21.5.1 BULK SEMICONDUCTORS 591
21.5.2 STRUCTURES OF REDUCED DIMENSIONALITY 592
21.6 PROBLEMS 592
REFERENCES 593
22 STIMULATED EMISSION AND LASER PROCESSES 599
22.1 EXCITONIC PROCESSES 600
22.2 ELECTRON-HOLE PLASMAS 608
22.3 CAVITY LASING 611
IMAGE 7
CONTENTS XXVII
22.4 RANDOM LASING 611
22.5 BASIC CONCEPTS OF LASER DIODES AND PRESENT RESEARCH TRENDS 612
22.6 PROBLEMS 617
REFERENCES 617
23 TIME RESOLVED SPECTROSCOPY 623
23.1 THE BASIC TIME CONSTANTS 624
23.2 DECOHERENCE AND PHASE RELAXATION 630
23.2.1 DETERMINATION OF THE PHASE RELAXATION TIMES 630
23.2.2 QUANTUM COHERENCE, COHERENT CONTROL AND NON-MARKOVIAN DECAY 663
23.3 INTRA-SUBBAND AND INTER-SUBBAND RELAXATION 672
23.3.1 FORMATION TIMES OF VARIOUS COLLECTIVE EXCITATIONS 672 23.3.2
INTRABAND AND INTER-SUBBAND RELAXATION 674
23.3.3 TRANSPORT PROPERTIES 679
23.4 INTERBAND RECOMBINATION 680
23.5 PROBLEMS 691
REFERENCES 691
24 OPTICAL BISTABILITY, OPTICAL COMPUTING, SPINTRONICS AND QUANTUM
COMPUTING 701
24.1 OPTICAL BISTABILITY 701
24.1.1 BASIC CONCEPTS AND MECHANISMS 702
24.1.2 DISPERSIVE OPTICAL BISTABILITY 703
24.1.3 OPTICAL BISTABILITY DUE TO BLEACHING 706
24.1.4 INDUCED ABSORPTIVE BISTABILITY 708
24.1.5 ELECTRO-OPTIC BISTABILITY 711
24.1.6 NONLINEAR DYNAMICS 713
24.2 DEVICE IDEAS, DIGITAL OPTICAL COMPUTING AND WHY IT FAILED 720
24.3 SPINTRONICS 724
24.4 QUANTUM COMPUTING 724
24.5 PROBLEMS 726
REFERENCES 726
25 EXPERIMENTAL METHODS 731
25.1 LINEAR OPTICAL SPECTROSCOPY 732
25.1.1 EQUIPMENT FOR LINEAR SPECTROSCOPY 733
25.1.2 TECHNIQUES AND RESULTS 735
25.2 NONLINEAR OPTICAL SPECTROSCOPY 740
25.2.1 EQUIPMENT FOR NONLINEAR OPTICS 741
25.2.2 EXPERIMENTAL TECHNIQUES AND RESULTS 744
25.3 TIME-RESOLVED SPECTROSCOPY 753
25.3.1 EQUIPMENT FOR TIME-RESOLVED SPECTROSCOPY 753
25.3.2 EXPERIMENTAL TECHNIQUES AND RESULTS 757
IMAGE 8
XXV111
CONTENTS
25.4 SPATIALLY RESOLVED SPECTROSCOPY 762
25.4.1 EQUIPMENT FOR SPATIALLY RESOLVED SPECTROSCOPY 762 25.4.2
EXPERIMENTAL TECHNIQUES AND RESULTS 765
25.5 SPECTROSCOPY UNDER THE INFLUENCE OF EXTERNAL FIELDS 767
25.5.1 EQUIPMENT FOR SPECTROSCOPY UNDER THE INFLUENCE OF EXTERNAL FIELDS
768
25.5.2 EXPERIMENTAL TECHNIQUES AND RESULTS 769
25.6 PROBLEMS 771
REFERENCES 772
26 GROUP THEORY IN SEMICONDUCTOR OPTICS 779
26.1 INTRODUCTORY REMARKS 779
26.2 SOME ASPECTS OF ABSTRACT GROUP THEORY FOR CRYSTALS 780
26.2.1 SOME ABSTRACT DEFINITIONS 781
26.2.2 CLASSIFICATION OF THE GROUP ELEMENTS 781
26.2.3 ISOMORPHISM AND HOMOMORPHISM OF GROUPS 782
26.2.4 SOME EXAMPLES OF GROUPS 782
26.3 THEORY OF REPRESENTATIONS AND OF CHARACTERS 787
26.4 HAMILTON OPERATOR AND GROUP THEORY 792
26.5 APPLICATIONS TO SEMICONDUCTORS OPTICS 794
26.6 SOME SELECTED GROUP TABLES 804
26.7 PROBLEMS 809
REFERENCES 812
27 SEMICONDUCTOR BLOCH EQUATIONS 813
27.1 DYNAMICS OF A TWO-LEVEL SYSTEM 814
27.1.1 WAVE-FUNCTION DESCRIPTION 815
27.1.2 POLARIZATION AND INVERSION AS STATE VARIABLES 817
27.1.3 PSEUDO-SPIN FORMULATION 818
27.1.4 LINEAR RESPONSE O F A TWO LEVEL SYSTEM 820
27.2 OPTICAL BLOCH EQUATIONS 821
27.2.1 INTERBAND SUSCEPTIBILITY 822
27.3 SEMICONDUCTOR BLOCH EQUATIONS 823
27.3.1 EXCITONS 824
27.4 SOME SELECTED COHERENT PROCESSES 826
27.4.1 PUMP-PROBE 827
27.4.2 FOUR-WAVE MIXING 828
27.4.3 PHOTON ECHO 828
27.5 PROBLEMS 832
REFERENCES 833
THE FINAL PROBLEM 835
INDEX 837 |
any_adam_object | 1 |
author | Klingshirn, Claus 1944- |
author_GND | (DE-588)113879016 |
author_facet | Klingshirn, Claus 1944- |
author_role | aut |
author_sort | Klingshirn, Claus 1944- |
author_variant | c k ck |
building | Verbundindex |
bvnumber | BV040389077 |
classification_rvk | UP 3050 UP 3600 ZN 5030 |
classification_tum | PHY 685f PHY 770f |
ctrlnum | (OCoLC)808620197 (DE-599)DNB1019143320 |
dewey-full | 537.6226 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 537 - Electricity and electronics |
dewey-raw | 537.6226 |
dewey-search | 537.6226 |
dewey-sort | 3537.6226 |
dewey-tens | 530 - Physics |
discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | 4. ed. |
format | Book |
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id | DE-604.BV040389077 |
illustrated | Illustrated |
indexdate | 2024-08-21T00:07:04Z |
institution | BVB |
isbn | 3642283616 9783642283611 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-025242452 |
oclc_num | 808620197 |
open_access_boolean | |
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physical | XXVIII, 849 S. Ill., graph. Darst. |
publishDate | 2012 |
publishDateSearch | 2012 |
publishDateSort | 2012 |
publisher | Springer |
record_format | marc |
series2 | Graduate texts in physics |
spelling | Klingshirn, Claus 1944- Verfasser (DE-588)113879016 aut Semiconductor optics with 18 tables Claus F. Klingshirn 4. ed. Berlin [u.a.] Springer 2012 XXVIII, 849 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Graduate texts in physics Halbleiter (DE-588)4022993-2 gnd rswk-swf Optik (DE-588)4043650-0 gnd rswk-swf Optische Eigenschaft (DE-588)4123887-4 gnd rswk-swf Halbleiter (DE-588)4022993-2 s Optische Eigenschaft (DE-588)4123887-4 s DE-604 Optik (DE-588)4043650-0 s 1\p DE-604 Erscheint auch als Online-Ausgabe 978-3-642-28362-8 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3966112&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025242452&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 | Klingshirn, Claus 1944- Semiconductor optics with 18 tables Halbleiter (DE-588)4022993-2 gnd Optik (DE-588)4043650-0 gnd Optische Eigenschaft (DE-588)4123887-4 gnd |
subject_GND | (DE-588)4022993-2 (DE-588)4043650-0 (DE-588)4123887-4 |
title | Semiconductor optics with 18 tables |
title_auth | Semiconductor optics with 18 tables |
title_exact_search | Semiconductor optics with 18 tables |
title_full | Semiconductor optics with 18 tables Claus F. Klingshirn |
title_fullStr | Semiconductor optics with 18 tables Claus F. Klingshirn |
title_full_unstemmed | Semiconductor optics with 18 tables Claus F. Klingshirn |
title_short | Semiconductor optics |
title_sort | semiconductor optics with 18 tables |
title_sub | with 18 tables |
topic | Halbleiter (DE-588)4022993-2 gnd Optik (DE-588)4043650-0 gnd Optische Eigenschaft (DE-588)4123887-4 gnd |
topic_facet | Halbleiter Optik Optische Eigenschaft |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=3966112&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025242452&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT klingshirnclaus semiconductoropticswith18tables |