Ferroelectric thin-film waveguides in integrated optics and optoelectronics

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Hauptverfasser: Prochorov, Aleksandr M. 1916-2002 (VerfasserIn), Kuz'minov, Yu. S. (VerfasserIn), Chačaturjan, O. A. (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Cambridge Cambridge Internat. Science Publ. 1996
Ausgabe:1. publ.
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Datensatz im Suchindex

_version_ 1804126522712260608
adam_text CONTENTS PREFACE SYMBOLS INTRODUCTION 1 EPITAXIAL FILMS OF COMPLEX OXIDE COMPOUNDS 1.1 VACUUM EPITAXY 1.2 GAS-TRANSPORT EPITAXY 1.3 FILMS DEPOSITED BY RF SPUTTERING 1.3.1 THIN FILMS OF LINB0 3 DEPOSITED ON A SAPPHIRE SUBSTRATE 1.3.2 TUNGSTEN BRONZE FERROELECTRIC K 3 LI 2 NB 5 O 15 1.3.3 KNBO 3 THIN FILMS 1.3.4 KTANB 1-X O 3 THIN FILMS 1.3.5. THIN FILMS BY PULSED LASER DEPOSITION 1.3.6. WAVEGUIDES BY MEV HE ION IMPLANTATION 1.3.7 STRIP WAVEGUIDES 1.3.8 DOUBLE WAVEGUIDE 1.4 AUTODIFFUSED LAYERS IN LITHIUM NIOBATE AND LITHIUM TANTALATE 1.4.1 OUT-DIFFUSION KINETICS 1.5 THE DIFFUSION METHOD FOR METALS AND OXIDES 1.5.1 DIFFUSION OF TRANSITION METALS 1.5.2 TITANIUM DIFFUSION 1.5.3 COPPER DIFFUSION 1.6 PROTON-EXCHANGED LINBO 3 WAVEGUIDES 1.6.1 ION-EXCHANGE PROCESSES IN LINBO 3 1.6.2 SAMPLE PREPARATION AND EXPERIMENTAL METHODS 1.6.3 ANNEALED PROTON-EXCHANGED WAVEGUIDES 1.6.4 WAVEGUIDES FABRICATED USING BUFFERED MELTS 1.6.5 PROTON DIFFUSION 1.6.6 WAVEGUIDES USING CINNAMIC ACID 1.6.7 PROTON-EXCHANGE WAVEGUIDES OF MGO-DOPED AND ND: MGO-DOPED LINBO 1.7 PLANAR ION-EXCHANGED KTIOPO 4 WAVEGUIDES 2 LIQUID-PHASE EPITAXY OF FERROLELECTRICS 2.1 THE EPITAXIAL GROWTH BY MELTING (EGM) 2.2 THE CAPILLARY LIQUID EPITAXIAL (CLE) TECHNIQUE 2.2.1 CLE GROWTH PROCEDURE 2.2.2. CLE GROWTH AND CRYSTAL QUALITY 2.3 THE LIQUID-PHASE EPITAXY (LPE) TECHNIQUE 2.4 PHYSICO-CHEMICAL BASIS OF CAPILLARY LIQUID-PHASE EPITAXY 2.4.1 THE PHASE DIAGRAM OF LIVO 3 -LINBO 3 2.4.2 PHASE DIAGRAM OF LIVO 3 -LI(NB,TA)O 3 PSEUDOBINARY SYSTEM 2.4.3 THE SCHEME OF THE GROWTH CELL 2.5 KINETICS OF EPITAXIAL GROWTH OF LINBO 3 2.5.1 THE STATIONARY CRYSTALLIZATION MODEL 2.5.2 EPITAXY UNDER NON-ISOTHERMIC CONDITIONS 2.5.3 DETERMINATION OF SUPER SATURATION U AND DIFFUSION COEFFICIENT D 2.5.4 EPITAXY UNDER ISOTHERMAL CONDITIONS 2.6 CRYSTALLIZATION OF FILMS FROM LINB 1-Y TA Y O 3 SOLID SOLUTIONS 2.6.1 LIQUID-PHASE EPITAXIAL GROWTH OF LI(NB,TA)O 3 FILMS 2.7 THIN FILMS OF LINBO3 DOPED WITH DIFFERENT ELEMENTS 2.8 EPITAXIAL FERROELECTRIC FILMS WITH PEROVSKITE STRUCTURE 2.8.1 LIQUID-PHASE EPITAXY OF POTASSIUM NIOBATE 2.8.2 GROWTH OF POTASSIUM LITHIUM NIOBATE FILMS ON POTASSIUM BISMUTH NIOBATE SINGLE CRYSTALS 122 2.9 DIFFUSION LIQUID-PHASE METHOD OF GROWING IMMERSED WAVEGUIDE CHANNELS 123 2.9.1 STRIP LINE STRUCTURES 124 2.9.2 SYMMETRIC WAVEGUIDES 124 2.10 GROWTH OF EPITAXIAL FILMS IN THE KTIOPO 4 FAMILY OF CRYSTALS 127 3 INFLUENCE OF ELECTRIC CURRENT UPON LIQUID-PHASE EPITAXY OF FERROELECTRICS 131 3.1. ELECTRIC FIELD AND CRYSTALLIZATION 131 3.1.1 BULK CRYSTALLIZATION 131 3.1.2 THIN FILMS 134 3.1.3 LIQUID-PHASE ELECTROEPITAXY 136 3.2 PHYSICAL BASIS OF LIQUID-PHASE ELECTROEPITAXY (THE THEORY OF THE METHOD) 138 3.2.1 TEMPERATURE DISTRIBUTION IN A SYSTEM UNDER THE ACTION OF AN ELECTRIC CURRENT 13 8 3.2.2 FILM GROWTH RATE 141 3.2.3 CHEMICAL COMPOSITION CONTROL OF THE FILM 142 3.2.4 INITIAL STAGES OF NUCLEATION 143 3.3 THE ROLE OF THERMOELECTRIC EFFECTS IN THE COURSE OF LIQUID-PHASE ELECTROEPITAXY OF FERROELECTRICS 149 3.4 ELECTRO-LPE GROWTH OF LITHIUM NIOBATE-TANTALATE FILMS 151 3.4.1 EPITAXIAL GROWTH 152 3.4.2 ELECTROCHEMICAL PROCESSES IN THE LIQUID PHASE 152 3.4.3 GROWTH KINETICS OF ELECTRO-LPE GROWN LITHIUM NIOBATE-TANTALATE FILMS 155 3.5 OPTIMIZATION OF CONDITIONS OF EPITAXIAL GROWTH OF LITHIUM NIOBATE FILMS WITH ALLOWANCE FOR JOULE HEAT 158 4 STRUCTURE AND COMPOSITION OF LIGHT GUIDING FILMS 165 4.1 STRUCTURE AND PHYSICO-CHEMICAL PROPERTIES OF LITHIUM NIOBATE AND TANTALATE CRYSTALS 165 4.2 X-RAY DIFFRACTION ANALYSIS OF FILMS 173 4.2.1 LAYER COMPOSITION 174 4.2.2 MONOCRYSTALLINITY AND INTERPLANAR DISTANCES 175 4.2.3 MEASUREMENT OF STRAINS IN THE DIFFUSED LAYER 178 4.2.4 TI DISTRIBUTION IN DIFFUSED LAYERS 181 4.2.5 THE STRUCTURE OF PROTON-EXCHANGED LINBO 3 182 4.2.6 ORIENTATION RELATIONS 184 4.3 MORPHOLOGY AND PERFECTION OF LAYERS 185 4.3.1 MICROMORPHOLOGY OF FILM SURFACE FOR DIFFERENT CRYSTALLOGRAPHIC ORIENTATIONS OF THE SUBSTRATE 186 4.3.2 DIFFUSION-INDUCED DEFECTS IN FILMS 188 4.4 SUBSTRATE-FILM INTERFACE AND TRANSITION REGION 190 4.5 DISLOCATION STRUCTURE 191 4.6 DOMAIN STRUCTURE 196 4.6.1 EPITAXIAL FILM ON A DOMAIN BOUNDARY OF THE SUBSTRATE 197 4.6.2 DOMAIN CONFIGURATIONS IN FILMS 198 4.6.3 MICRODOMAINS IN SUBSTRATES AND IN EPITAXIAL LAYERS 199 4.6.4 PERIODICALLY INVERTED DOMAIN STRUCTURES IN LITAO 3 AND LINBO 3 USING PROTON EXCHANGE 200 4.6.5 WAVEGUIDE PERIODICALLY POLED BY APPLYING AN EXTERNAL FIELD 203 4.6.6 DOMAIN INVERSION IN LINBO 3 USING DIRECT ELECTRON-BEAM WRITING 204 4.7 ANNEALING-INDUCED VARIATION OF THE PHASE COMPOSITION AND CRYSTALLINE STRUCTURE OF THE LITHIUM NIOBATE CRYSTAL SURFACE 206 4.7.1 ANNEALING-INDUCED VARIATION OF THE CRYSTALLINE STRUCTURE OF THE LITHIUM NIOBATE CRYSTAL SURFACE 206 4.7.2 ANNEALING-INDUCED VARIATION OF THE PHASE COMPOSITION OF THE LITHIUM NIOBATE CRYSTAL SURFACE 208 5 PHYSICAL PROPERTIES OF WAVEGUIDE LAYERS 21 5 5.1 OPTICAL PROPERTIES OF LITHIUM NIOBATE AND TANTALATE SINGLE CRYSTALS 213 5.2 OPTICAL WAVEGUIDE MODES IN SINGLE-CRYSTAL FILMS 215 5.2.1 WAVEGUIDE AND RADIATION MODES 216 5.2.2 WAVE EQUATION AND FIELD DISTRIBUTION 221 5.2.3 OPTICAL MODES IN EPITAXIAL LI (NBTA)O 3 WAVEGUIDES 225 5.2.4 CHARACTERISTICS OF OUT-DIFFUSED WAVEGUIDES 229 5.2.5 PROPERTIES OF DIFFUSED WAVEGUIDES 234 5.3 SECOND HARMONIC GENERATION IN WAVEGUIDES 237 5.3.1 PHASE MATCHING IN AN OPTICAL WAVEGUIDE 239 5.3.2 OVERLAP OF FIELDS OF INTERACTING MODES 240 5.3.3 ANGULAR MATCHING 241 5.3.4 TEMPERATURE MATCHING 244 5.3.5 SECOND-HARMONIC GENERATION IN A WAVEGUIDE WITH PERIODICALLY DOMAIN-INVERTED REGIONS 247 5.3.6 EFFECT OF PROTON EXCHANGE ON THE NONLINEAR OPTICAL PROPERTIES 249 5.3.7 SUM-FREQUENCY GENERATION IN WAVEGUIDES 253 5.4 SECOND HARMONIC GENERATION IN THE FORM OF CHERENKOV RADIATION 25 5 5.5 ELECTRO-OPTIC EFFECTS IN OPTICAL WAVEGUIDES 258 5.6 LIGHT RESISTANCE OF LIGHT GUIDES 260 5.7 PHOTOREFRACTIVE PROPERTIES OF LIGHT GUIDES 264 5.7.1 HOLOGRAPHIC FORMATION OF GRATINGS IN OPTICAL WAVEGUIDE LAYERS 265 5.7.2 PHOTOREFRACTIVE EFFECT IN PLANAR TI-DIFFUSED GUIDES 269 5.7.3 RELAXATION OF INDEX CHANGE 274 5.7.4 PHOTOREFRACTIVE EFFECT IN ANNEALED PROTON-EXCHANGED LINBO 3 WAVEGUIDES 275 5.8 ENERGY LOSS IN WAVEGUIDES 279 5.8.1 LOSSES IN TI-DIFFUSED LINBO 3 WAVEGUIDES 279 5.8.2 ABSORPTION LOSS IN STRIP GUIDES 282 5.8.3 LOSS IN EPITAXIAL WAVEGUIDES 284 5.9 FERROELECTRIC PROPERTIES OF WAVEGUIDES 285 5.9.1 DIELECTRIC PROPERTIES 285 5.9.2 PYROELECTRIC PROPERTIES 287 5.9.2.1 THE LOW-FREQUENCY SINUSOIDAL TEMPERATURE MODULATION METHOD 287 5.9.2.2 THE THERMAL PULSE METHOD 287 5.10 TEMPERATURE DEPENDENCE OF THERMOELECTRIC COEFFICIENTS OF LITHIUM NIOBATE AND LITHIUM TANTALATE 289 6 THIN-FILM STRUCTURE IN INTEGRATED OPTICS 293 6.1 PRINCIPAL CHARACTERISTICS OF WAVEGUIDING ELECTRO-OPTIC MODULATORS 293 6.1.1 CONTROL VOLTAGE 293 6.1.2 BANDWIDTH 295 6.1.3 MODULATION DEPTH AND INSERTION LOSSES 297 6.2 PHOTOINDUCED POLARIZATION CONVERSION 298 6.3 WAVEGUIDE MODULATORS ON THE BASIS OF TI:LINBO 3 300 6.3.1 ELECTRO-OPTIC MODULATOR ON COUPLED CHANNEL WAVEGUIDES WITH A VARIABLE DELTA SS 300 6.3.2 INTERFEROMETRIC AND PERFECT INNER REFLECTION MODULATORS 304 6.4 PRACTICAL EXAMPLES OF WAVEGUIDE ELECTRO-OPTIC MODULATORS 308 6.4.1 OPTICAL WAVEGUIDE SWITCH MODULATOR 308 6.4.2 THIN-FILM ELECTRO-OPTIC LIGHT MODULATOR 311 6.4.3 BRAGG DIFFRACTION MODULATOR 315 6.4.4 RIDGE WAVEGUIDE MODULATOR 317 6.4.5 TI-DIFFUSED DIFFRACTION MODULATOR 320 6.4.6 INTERFEROMETRIC MACH-ZEHNDER MODULATOR 326 6.4.7 ELECTRO-OPTIC PHOTOREFRACTIVE MODULATOR 328 6.4.8 KNBO 3 INDUCED WAVEGUIDE CUT-OFF MODULATOR 331 6.5 WAVEGUIDE ELECTRO-OPTIC POLARIZATION TRANSFORMER 334 6.6 LIGHT BEAM SCANNING AND DEFLECTION IN ELECTRO-OPTIC WAVEGUIDES 338 6.7 ELECTRO-OPTICALLY TUNABLE WAVELENGTH FILTER 342 6.8 FLIP-CHIP COUPLING BETWEEN FIBRES AND CHANNEL WAVEGUIDES 345 6.9 KTIOPO 4 WAVEGUIDE DEVICES AND APPLICATIONS 349 6.9.1 PHASE MATCHING IN PERIODICALLY SEGMENTED KTIOPO 4 WAVEGUIDES 352 CONCLUSIONS 356 REFERENCES 357 INDEX 371
any_adam_object 1
author Prochorov, Aleksandr M. 1916-2002
Kuz'minov, Yu. S.
Chačaturjan, O. A.
author_GND (DE-588)118875671
author_facet Prochorov, Aleksandr M. 1916-2002
Kuz'minov, Yu. S.
Chačaturjan, O. A.
author_role aut
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dewey-hundreds 500 - Natural sciences and mathematics
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indexdate 2024-07-09T18:18:48Z
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oai_aleph_id oai:aleph.bib-bvb.de:BVB01-008067754
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owner_facet DE-384
physical XVIII, 373 S. Ill., graph. Darst.
publishDate 1996
publishDateSearch 1996
publishDateSort 1996
publisher Cambridge Internat. Science Publ.
record_format marc
spelling Prochorov, Aleksandr M. 1916-2002 Verfasser (DE-588)118875671 aut
Ferroelectric thin-film waveguides in integrated optics and optoelectronics A. M. Prokhorov ; Yu. S. Kuz'minov ; O. A. Khachaturyan
1. publ.
Cambridge Cambridge Internat. Science Publ. 1996
XVIII, 373 S. Ill., graph. Darst.
txt rdacontent
n rdamedia
nc rdacarrier
Aus d. Russ. übers.
Cristaux ferroélectriques ram
Ferroélectricité ram
Optoélectronique ram
Ferroelectric thin films
Integrated optics
Optical wave guides
Dünne Schicht (DE-588)4136925-7 gnd rswk-swf
Ferroelektrikum (DE-588)4154121-2 gnd rswk-swf
Wellenleiter (DE-588)4065317-1 gnd rswk-swf
Ferroelektrikum (DE-588)4154121-2 s
Dünne Schicht (DE-588)4136925-7 s
Wellenleiter (DE-588)4065317-1 s
DE-604
Kuz'minov, Yu. S. Verfasser aut
Chačaturjan, O. A. Verfasser aut
OEBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008067754&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis
spellingShingle Prochorov, Aleksandr M. 1916-2002
Kuz'minov, Yu. S.
Chačaturjan, O. A.
Ferroelectric thin-film waveguides in integrated optics and optoelectronics
Cristaux ferroélectriques ram
Ferroélectricité ram
Optoélectronique ram
Ferroelectric thin films
Integrated optics
Optical wave guides
Dünne Schicht (DE-588)4136925-7 gnd
Ferroelektrikum (DE-588)4154121-2 gnd
Wellenleiter (DE-588)4065317-1 gnd
subject_GND (DE-588)4136925-7
(DE-588)4154121-2
(DE-588)4065317-1
title Ferroelectric thin-film waveguides in integrated optics and optoelectronics
title_auth Ferroelectric thin-film waveguides in integrated optics and optoelectronics
title_exact_search Ferroelectric thin-film waveguides in integrated optics and optoelectronics
title_full Ferroelectric thin-film waveguides in integrated optics and optoelectronics A. M. Prokhorov ; Yu. S. Kuz'minov ; O. A. Khachaturyan
title_fullStr Ferroelectric thin-film waveguides in integrated optics and optoelectronics A. M. Prokhorov ; Yu. S. Kuz'minov ; O. A. Khachaturyan
title_full_unstemmed Ferroelectric thin-film waveguides in integrated optics and optoelectronics A. M. Prokhorov ; Yu. S. Kuz'minov ; O. A. Khachaturyan
title_short Ferroelectric thin-film waveguides in integrated optics and optoelectronics
title_sort ferroelectric thin film waveguides in integrated optics and optoelectronics
topic Cristaux ferroélectriques ram
Ferroélectricité ram
Optoélectronique ram
Ferroelectric thin films
Integrated optics
Optical wave guides
Dünne Schicht (DE-588)4136925-7 gnd
Ferroelektrikum (DE-588)4154121-2 gnd
Wellenleiter (DE-588)4065317-1 gnd
topic_facet Cristaux ferroélectriques
Ferroélectricité
Optoélectronique
Ferroelectric thin films
Integrated optics
Optical wave guides
Dünne Schicht
Ferroelektrikum
Wellenleiter
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008067754&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
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