Single-mode fibers: fundamentals
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
1988
|
Schriftenreihe: | Springer series in optical sciences
57 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. 441 - 505 |
Beschreibung: | XIV, 530 S. Ill., graph. Darst. |
ISBN: | 3540187456 0387187456 |
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264 | 1 | |a Berlin [u.a.] |b Springer |c 1988 | |
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490 | 1 | |a Springer series in optical sciences |v 57 | |
500 | |a Literaturverz. S. 441 - 505 | ||
650 | 4 | |a Fibres optiques | |
650 | 4 | |a Optical fibers | |
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Datensatz im Suchindex
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adam_text | E.-G. NEUMANN SINGLE-MODE FIBERS FUNDAMENTALS WITH 105 FIGURES
SPRINGER-VERLAG BERLIN HEIDELBERG NEW YORK LONDON PARIS TOKYO CONTENTS
1. INTRODUCTION 1 1.1 HISTORICAL NOTE 1 1.2 MULTIMODE AND SINGLE-MODE
FIBERS 2 1.3 AIM AND ORGANIZATION OF THE BOOK 4 2. PHYSICAL EXPLANATION
OF WAVEGUIDING BY SINGLE-MODE FIBERS 9 2.1 FREE WAVE BEAM IN A
HOMOGENEOUS MEDIUM 9 2.2 WAVE BEAM GUIDED BY A STRAIGHT SINGLE-MODE
FIBER 12 2.3 WAVE BEAM PROPAGATING IN A CURVED SINGLE-MODE FIBER 14 2.4
FREE BEAM RADIATED FROM THE END OF A SINGLE-MODE FIBER ... 15 3.
ELECTROMAGNETIC FIELDS 17 3.1 COORDINATE SYSTEMS 18 3.2 VECTORS 19 3.3
VECTOR FIELDS 19 3.4 COMPLEX NOTATION FOR SINUSOIDAL QUANTITIES 20 3.5
GRAPHICAL REPRESENTATION OF ELECTROMAGNETIC FIELDS 21 3.5.1 FIELD LINES
21 3.5.2 FIELD VECTORS 21 3.5.3 WAVEFRONTS 21 3.5.4 LINES OF CONSTANT
AMPLITUDE 23 3.5.5 BEAM BOUNDARY 23 3.5.6 INTENSITY VECTOR 24 3.5.7
REGIONS OF HIGH INTENSITY 24 3.5.8 FIELD PROFILES 24 3.6 THE POYNTING
VECTOR AND THE TRANSMITTED POWER 24 3.7 COHERENCE 25 3.7.1 INTERFERENCE
25 3.7.2 COHERENT AND INCOHERENT WAVES 26 3.7.3 DEGREE OF COHERENCE AND
VISIBILITY OF INTERFERENCE FRINGES 27 3.7.4 COHERENCE TIME AND COHERENCE
LENGTH 28 3.7.5 COHERENCE AREA 30 3.7.6 RELATION BETWEEN LINEWIDTH AND
COHERENCE TIME 31 IX 4. GAUSSIAN BEAMS 35 4.1 AMPLITUDE DISTRIBUTION 35
4.2 PHASE DISTRIBUTION 41 4.3 ELECTRIC AND MAGNETIC FIELD LINES 45 4.4
POWER TRANSMITTED BY A GAUSSIAN BEAM 48 4.5 UNIFORM PLANE WAVE 50 4.6
POLARIZATION OF GAUSSIAN BEAMS 54 4.7 CURVED GAUSSIAN BEAMS 55 4.8
GAUSSIAN BEAMS OF HIGHER ORDER 56 4.9 PROPAGATION THROUGH OPTICAL
SYSTEMS 58 5. THE FUNDAMENTAL FIBER MODE 61 5.1 THE REFRACTIVE-INDEX
PROFILE 63 5.2 NORMALIZED FREQUENCY 66 5.3 FIELD DISTRIBUTION 68 5.3.1
ELECTRIC FIELD 68 5.3.2 GAUSSIAN AND ESI APPROXIMATIONS 74 5.3.3
MAGNETIC FIELD 77 5.3.4 FIELD LINES 77 5.3.5 POLARIZATION 80 5.3.6 FIBER
AND MODE DESIGNATION 82 5.4 INTENSITY DISTRIBUTION AND TRANSMITTED POWER
83 5.5 PHASE CONSTANT 87 5.6 PHASE VELOCITY 92 5.7 GROUP VELOCITY 93 5.8
CHROMATIC DISPERSION 99 5.9 ATTENUATION 104 5.9.1 ATTENUATION
COEFFICIENT 105 5.9.2 ATTEI.UATION BY RAYLEIGH SCATTERING 109 5.9.3
ATTENUATION BY INTRINSIC ABSORPTION ILL 5.9.4 ATTENUATION BY IMPURITY
ABSORPTION 112 5.9.5 REFLECTION LOSSES 115 5.9.6 ATTENUATION CAUSED BY
NONLINEAR EFFECTS 117 5.9.7 PURE BEND LOSS 118 5.9.8 TRANSITION LOSS 131
5.9.9 MICROBENDING LOSS 134 5.9.10 OTHER CAUSES OF RADIATION LOSSES 139
6. HIGHER-ORDER MODES 142 6.1 FIELD DISTRIBUTION 142 6.2 CUTOFF
WAVELENGTH 147 6.3 LPN MODE 149 6.3.1 FIELD DISTRIBUTION 149 6.3.2
THEORETICAL CUTOFF WAVELENGTH 152 6.3.3 EFFECTIVE CUTOFF WAVELENGTH 156
6.4 LEAKY MODES 161 6.5 CLADDING MODES 164 6.6 RADIATION MODES 165 6.7
DUAL MODE FIBER 165 7. LAUNCHING OF MODES 167 7.1 MODE ORTHOGONALITY 168
7.2 LAUNCHING BY COHERENT ILLUMINATION OF THE FIBER FRONT END .. 170
7.2.1 OVERLAP INTEGRAL 170 7.2.2 EXCITATION OF THE LPOI MODE BY THE
FUNDAMENTAL GAUSSIAN BEAM 174 7.3 LAUNCHING BY INCOHERENT ILLUMINATION
OF THE FIBER FRONT END 181 7.4 LAUNCHING BY EVANESCENT FIELD COUPLING
184 7.5 MISCELLANEOUS METHODS OF MODE LAUNCHING 192 7.6 SELECTIVE MODE
EXCITATION 193 8. RADIATION FROM THE FIBER END 195 8.1 FAR-FIELD
RADIATION PATTERN 195 8.2 RELATIONS BETWEEN THE NEAR-FIELD AND FAR-FIELD
FUNCTIONS ... 205 9. JOINTS BETWEEN FIBERS 210 9.1 LOSS CAUSED BY SPOT
SIZE MISMATCH 211 9.2 LOSS CAUSED BY TRANSVERSE OFFSET 213 9.3 LOSS
CAUSED BY A GAP 214 9.4 LOSS CAUSED BY A TILT 215 9.5 GENERAL LOSS
FORMULAS 216 9.6 MODE CONVERSION AT JOINTS 218 9.7 JOINTS BETWEEN
MULTIMODE AND SINGLE-MODE FIBERS 218 10. SPOT SIZE AND WIDTH OF THE
RADIATION PATTERN 221 10.1 DEFINITIONS FOR THE WIDTH OF THE NEAR-FIELD
221 10.1.1 SIMPLE DEFINITION OF THE SPOT SIZE 222 10.1.2 SPOT SIZE
RELATED TO LAUNCHING 223 10.1.3 SPOT SIZE RELATED TO MICROBENDING LOSSES
225 10.1.4 SPOT SIZE RELATED TO WAVEGUIDE DISPERSION 226 10.1.5 SPOT
SIZE RELATED TO TRANSVERSE OFFSET LOSS 227 10.1.6 OTHER DEFINITIONS FOR
THE SPOT SIZE 228 10.1.7 RELATIONS BETWEEN THE DIFFERENT SPOT SIZES 229
10.2 DEFINITIONS FOR THE ANGULAR WIDTH OF THE FAR-FIELD RADIATION
PATTERN 233 10.2.1 SIMPLE DEFINITION OF THE FAR-FIELD WIDTH 234 10.2.2
FAR-FIELD WIDTH RELATED TO LAUNCHING 234 10.2.3 STRANGE DEFINITION FOR
THE FAR-FIELD WIDTH 235 10.2.4 EFFECTIVE FAR-FIELD WIDTH 235 10.2.5
OTHER DEFINITIONS FOR THE FAR-FIELD WIDTH 236 10.3 RELATIONS BETWEEN THE
NEAR-FIELD AND FAR-FIELD WIDTHS .... 236 XI 11. SIGNAL TRANSMISSION
THROUGH SINGLE-MODE FIBERS 238 11.1 OPTICAL TRANSFER FUNCTION 239 11.2
BASEBAND TRANSFER FUNCTION 239 11.2.1 SYSTEMS WITH INTENSITY MODULATION
241 11.2.2 COHERENT SYSTEMS 251 11.3 IMPULSE RESPONSE 253 11.4
TRANSMISSION OF AN ANALOGUE SIGNAL 253 11.5 PULSE TRANSMISSION 256 11.6
SOURCES OF SIGNAL QUALITY IMPAIRMENT 264 11.6.1 INTERFERENCE WITH THE
LPN MODE 264 11.6.2 WAVELENGTH CHIRPING 267 11.6.3 MODE HOPPING 268
11.6.4 MODE SWITCHING 268 11.6.5 MODE PARTITIONING 269 11.6.6 MEAN
WAVELENGTH SHIFT 270 11.6.7 OPTICAL FEEDBACK 270 11.6.8 MULTIPLE
REFLECTIONS 272 11.6.9 SELF-AMPLITUDE MODULATION 272 11.6.10
POLARIZATION SELECTIVE LOSS 272 11.6.11 POLARIZATION MODE DISPERSION 272
11.6.12 POLARIZATION MISMATCH 276 12. COMPONENTS FOR SINGLE-MODE FIBERS
277 12.1 FIBER ENDS 278 12.1.1 PREPARATION OF HIGH QUALITY FIBER
ENDFACES 278 12.1.2 LOW REFLECTANCE FIBER ENDS 280 12.1.3 REFLECTING
FIBER ENDS 280 12.2 COUPLERS 281 12.2.1 BEAM TO FIBER COUPLERS 281
12.2.2 SOURCE TO FIBER COUPLERS 285 12.2.3 COUPLERS TO INTEGRATED
OPTICAL WAVEGUIDES :... 290 12.2.4 SPLICES 292 12.2.5 CONNECTORS 300
12.2.6 FIBER TAPERS 304 12.2.7 OPTICAL ROTARY JOINTS 307 12.2.8 CLADDING
MODE STRIPPERS 307 12.2.9 ATTENUATORS 308 12.2.10 POWER SPLITTERS AND
COMBINERS 309 12.2.11 DIRECTIONAL COUPLERS 310 12.2.12 STAR COUPLERS 316
12.2.13 FIBER TAPS . 316 12.2.14 MODE FILTERS 318 12.2.15 MODE
CONVERTERS 319 12.3 WAVELENGTH SELECTIVE COMPONENTS 319 12.3.1
WAVELENGTH FILTERS 319 12.3.2 DISPERSION COMPENSATORS 320 XII 12.3.3
WAVELENGTH MULTIPLEXERS AND DEMULTIPLEXERS 321 12.3.4 FIBER RESONATORS
. 328 13. MEASURING TECHNIQUES 332 13.1 OPTICAL SOURCES AND DETECTORS
333 13.1.1 SOURCES 333 13.1.2 DETECTORS 335 13.2 MEASUREMENT OF OPTICAL
POWER AND INSERTION LOSS 337 13.3 MEASUREMENT OF FIBER ATTENUATION 338
13.3.1 CUT-BACK METHOD 338 13.3.2 ATTENUATION CAUSED BY ABSORPTION 341
13.3.3 ATTENUATION CAUSED BY SCATTERING 342 13.3.4 ATTENUATION CAUSED BY
MACROBENDING 342 13.3.5 ATTENUATION CAUSED BY MICROBENDING 343 13.3.6
ATTENUATION OF THE LPN MODE 344 13.4 BACKSCATTERING METHOD 348 13.4.1
BACKSCATTERING SETUP 348 13.4.2 THEORY OF THE OTDR 349 13.4.3 EVALUATION
OF BACKSCATTERING SIGNATURES 355 13.4.4 DESIGN AND PERFORMANCE OF
PRACTICAL OTDR S 359 13.5 MEASUREMENT OF THE NEAR-FIELD INTENSITY
DISTRIBUTION 368 13.6 MEASUREMENT OF THE FAR-FIELD RADIATION PATTERN 371
13.7 MEASUREMENT OF THE SPOT SIZE 374 13.7.1 SPOT SIZE DETERMINED FROM
THE FIELD DISTRIBUTION 374 13.7.2 TRANSVERSE OFFSET METHOD 376 13.7.3
APERTURE METHODS 381 13.7.4 MASK METHODS 387 13.7.5 NONCIRCULAR MODE
FIELDS 390 13.7.6 COMPARISON OF METHODS FOR MEASURING THE SPOT SIZE .
390 13.8 MEASUREMENT OF CUTOFF WAVELENGTH 393 13.8.1 BENDING METHOD 394
13.8.2 POWER STEP METHOD 396 13.8.3 SPOT SIZE METHOD 398 13.8.4
REFRACTED POWER TECHNIQUE 399 13.8.5 NEAR-FIELD METHOD 400 13.8.6 PULSE
HEIGHT METHOD 401 13.8.7 POLARIZATION METHOD 402 13.8.8 COHERENCE METHOD
403 13.8.9 REFRACTIVE-INDEX PROFILE METHOD 404 13.8.10 FAR-FIELD METHOD
404 13.8.11 TRANSVERSE DIFFRACTION METHOD 404 13.8.12 INTERFERENCE
METHOD 405 13.8.13 MISCELLANEOUS METHODS 406 13.8.14 COMPARISON OF
METHODS 407 13.9 MEASUREMENT OF CHROMATIC DISPERSION 408 13.9.1 PULSE
DELAY METHOD 410 XIII 13.9.2 PHASE SHIFT METHOD 413 13.9;3
INTERFEROMETRIC METHOD 414 13.9.4 SPOT SIZE METHOD 417 13.9.5
MISCELLANEOUS METHODS 419 13.9.6 COMPARISON OF METHODS 421 13.10
MEASUREMENT OF THE REFRACTIVE-INDEX PROFILE 422 13.10.1 INDEX PROFILE OF
THE PREFORM 422 13.10.2 INDEX PROFILE OF THE FIBER 425 13.11
MISCELLANEOUS MEASUREMENTS 430 LIST OF SYMBOLS 431 REFERENCES 441
SUBJECT INDEX 507 XIV
|
any_adam_object | 1 |
author | Neumann, Ernst-Georg |
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dewey-raw | 621.36/92 |
dewey-search | 621.36/92 |
dewey-sort | 3621.36 292 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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id | DE-604.BV002068703 |
illustrated | Illustrated |
indexdate | 2024-07-09T15:39:47Z |
institution | BVB |
isbn | 3540187456 0387187456 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-001352995 |
oclc_num | 17649458 |
open_access_boolean | |
owner | DE-384 DE-703 DE-858 DE-12 DE-19 DE-BY-UBM DE-522 DE-188 DE-91G DE-BY-TUM |
owner_facet | DE-384 DE-703 DE-858 DE-12 DE-19 DE-BY-UBM DE-522 DE-188 DE-91G DE-BY-TUM |
physical | XIV, 530 S. Ill., graph. Darst. |
publishDate | 1988 |
publishDateSearch | 1988 |
publishDateSort | 1988 |
publisher | Springer |
record_format | marc |
series | Springer series in optical sciences |
series2 | Springer series in optical sciences |
spelling | Neumann, Ernst-Georg Verfasser aut Single-mode fibers fundamentals E.-G. Neumann Berlin [u.a.] Springer 1988 XIV, 530 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Springer series in optical sciences 57 Literaturverz. S. 441 - 505 Fibres optiques Optical fibers Single-mode optical fibers Monomodefaser (DE-588)4196888-8 gnd rswk-swf Grundmodenfaser (DE-588)4158394-2 gnd rswk-swf Monomodefaser (DE-588)4196888-8 s DE-604 Grundmodenfaser (DE-588)4158394-2 s Springer series in optical sciences 57 (DE-604)BV000000237 57 HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001352995&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Neumann, Ernst-Georg Single-mode fibers fundamentals Springer series in optical sciences Fibres optiques Optical fibers Single-mode optical fibers Monomodefaser (DE-588)4196888-8 gnd Grundmodenfaser (DE-588)4158394-2 gnd |
subject_GND | (DE-588)4196888-8 (DE-588)4158394-2 |
title | Single-mode fibers fundamentals |
title_auth | Single-mode fibers fundamentals |
title_exact_search | Single-mode fibers fundamentals |
title_full | Single-mode fibers fundamentals E.-G. Neumann |
title_fullStr | Single-mode fibers fundamentals E.-G. Neumann |
title_full_unstemmed | Single-mode fibers fundamentals E.-G. Neumann |
title_short | Single-mode fibers |
title_sort | single mode fibers fundamentals |
title_sub | fundamentals |
topic | Fibres optiques Optical fibers Single-mode optical fibers Monomodefaser (DE-588)4196888-8 gnd Grundmodenfaser (DE-588)4158394-2 gnd |
topic_facet | Fibres optiques Optical fibers Single-mode optical fibers Monomodefaser Grundmodenfaser |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001352995&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000000237 |
work_keys_str_mv | AT neumannernstgeorg singlemodefibersfundamentals |