Near-field microscopy and near-field optics:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
London
Imperial College Press
2003
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | Hier auch später erschienene, unveränderte Nachdrucke |
Beschreibung: | XXI, 317 S. Ill., graph. Darst. |
ISBN: | 186094258x |
Internformat
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100 | 1 | |a Courjon, Daniel |e Verfasser |4 aut | |
245 | 1 | 0 | |a Near-field microscopy and near-field optics |c Daniel Courjon |
246 | 1 | 3 | |a Near field microscopy and near field optics |
264 | 1 | |a London |b Imperial College Press |c 2003 | |
300 | |a XXI, 317 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
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500 | |a Hier auch später erschienene, unveränderte Nachdrucke | ||
650 | 4 | |a Microscopie en champ proche | |
650 | 4 | |a Optique | |
650 | 4 | |a Near-field microscopy | |
650 | 4 | |a Optics | |
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Datensatz im Suchindex
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adam_text | NEAR-FIELD MICROSCOPY AND NEAR-FIELD OPTICS DANIEL COURJON UNIVERSITY DE
FRANCHE-COMTE~, FRANCE ICP IMPERIAL COLLEGE PRESS CONTENTS PREFACE IX
HOW TO READ THIS BOOK XI CHAPTER 1 HISTORY OF NEAR-FIELD OPTICS 1 1 .1
NOTION OF IMAGING SYSTEM 1 1.2 BASES OF IMAGING 4 1.2.1 VISION 4 1.2.2
IMAGE 5 1.2.3 FAR-FIELD IMAGING SYSTEMS 6 1.2.4 NOTION OF
SUPERRESOLUTION 7 1.2.5 NEAR-FIELD IMAGING SYSTEMS 9 1.3 HISTORY OF
NEAR-FIELD MICROSCOPY 12 1.3.1 SYNGE S SPECULATION 12 1.3.2 J. O KEEFE S
LETTER 12 1.3.3 E. ASH AND G. NICHOLLS REALIZATION 13 1.3.4
SUPERRESOLUTION IN IMAGING SYSTEMS 13 1.3.5 SCANNING TUNNELLING
MICROSCOPY 14 1.3.6 EARLY OPTICAL NEAR-FIELD MICROSCOPES 14 CHAPTER 2
NON-RADIATING SOURCES & NON-PROPAGATING FIELDS , 17 2.1 INTRODUCTION 17
2.1.1 A FEW WORDS OF TERMINOLOGY 18 2.2 VARIOUS NON-RADIATING SOURCES 18
2.3 NON-RADIATING CLASSICAL DISTRIBUTIONS 18 XIII XIV CONTENTS 2.4
NON-RADIATING SOURCES BY DESTRUCTIVE INTERFERENCE 21 2.5 EXTENSION OF
THE NOTION OF NON-RADIATING SOURCE 23 2.5.1 EVANESCENT FIELDS 24 2.5.2
EVANESCENT FIELD GENERATED BY TOTAL INTERNAL REFLECTION . 24 2.5.3
DESTRUCTIVE-INTERFERENCE DEVICE 25 2.5.4 RESONANT EVANESCENT FIELDS 26
2.5.5 RESONANT SPHERICAL DEVICES 29 CHAPTER 3 EVANESCENT OPTICS 31 3.1
THEORY OF FRESNEL EVANESCENT WAVES 32 3.1.1 REFLECTION AND REFRACTION
LAWS 32 3.1.2 TOTAL INTERNAL REFLECTION 34 3.1.3 ENERGY FLOW AND
POYNTING VECTOR 37 3.1.4 GOOS-HANCHEN AND TRANSVERSAL SHIFTS 38 3.1.4.1
GOOS-HANCHEN SHIFT 38 3.1.4.2 TRANSVERSE SHIFT: IMBERT S SHIFT 41 3.2
EVANESCENT FIELDS GENERATED BY SUB-WAVELENGTH DIFFRACTION ... . 42 3.3
LIGHT BEAM PROPAGATION 43 3.4 A PARTICULAR CASE OF EVANESCENT WAVES: THE
PLASMONS 48 3.4.1 DEFINITION OF A PLASMON ; . . 48 3.4.2 THEORY 49
3.4.3 SCANNING PLASMON OPTICAL MICROSCOPY . . . . . . . . . . 51 CHAPTER
4 THEORIES AND MODELLINGS 57 4.1 EARLY WORKS 57 4.2 RECENT WORKS . . 58
4.3 DIFFERENT WAYS OF APPROACHING THE THEORY OF NEAR-FIELD OPTICS . . 59
4.3.1 PHYSICAL APPROACH . . . . . . ........ . . . 59 4.3.1.1 .
DEPENDING ON THE DIMENSIONAL RELATIONSHIP BETWEENITHE SAMPLE AND THE
WAVELENGTH . . .; 59 4.3.1.2 DEPENDING ON THE MATHEMATICAL FIELD ...
DESCRIPTION . . . . .:... : . . . .: . 60 4.3.2 MODEL SPACE . . . . .
.*. . . . . . . . . . . . . . . . . . 60 4.3.3 GLOBAL OR NON-GLOBAL
APPROACH 60 4.4 TIP DESCRIPTION . . . . . . ; . . . . . . . . . . . .
. . . . . . . . 61 4.4.1 DESCRIPTION IN A NON-GLOBAL SCHEME 61 4.4.1.1
GEOMETRICAL APPROACH . . . . . . . . . . : . . . 62 4.4.1.2 TIP
COLLECTOR AS A POLARISABLE DIPOLE CENTRE . . 62 CONTENTS XV 4.4.1.3 TIP
COLLECTOR AS A SMALL SPHERE .,. . . . . . . . 63 ,Y; . . 4.4.1.4 THE
APERTURE CASE . . . . . . . . . . . ; 64 ,I . 4.4.1.5 THE
APERTURELESS.COLLECTOR, CONCEPT , . . . . . . 65 . 4.4.2 DESCRIPTION
IN A GLOBAL SCHEME , * * * * 68 . * ,: 4.4.2.1 NON-RETARDED
ELECTROSTATIC MODEL . 68 :*; 4.4.2.2 FINITE-DIFFERENCE TIME-DOMAIN MODEL
68 4.4.2.3 RIGOROUS THEORY OF GRATINGS 68 : 4.4.2.4 PERTURBATIVE METHOD
. . . . . . . 69 4.4.2.5 MULTIPLE MULTIPOLE TECHNIQUE .. . . . . . . . .
69 4:5 LIGHT-SAMPLE INTERACTION .* 69 4.5.1 RIGOROUS GRATING THEORY .
69 4.5.1.1 DIFFERENTIAL, METHODS ..*..: . . . 70 4.5.2 THE
RECIPROCAL-SPACE PERTURBATIVE METHOD (RSPM) . . 73 4.5.2.1 DIFFRACTION
IN TERM OF ANGULAR SPECTRUM * * EXPANSION . . -. . . . .: . 73 . (A)
RAYLEIGH S HYPOTHESIS .. . . . 75 (B) PERTURBATIVE APPROACH . .:*... 76
4.5.3 DIRECT-SPACE-GLOBAL APPROACHES . 77 4.5.3.1 FINITE-DIFFERENCE
TIME-DOMAIN METHOD (FDTD) -.:.***.. .:-..: 77 1 . . (C) PRINCIPLE 78
4.5.3.2 DIRECT-SPACE INTEGRAL EQUATION METHOD (DSIEM) 79 1 (D)
PERTURBATIVE APPROXIMATION .* . 84 4.5.3.3 VARIANT OF THE DIPOLAR
APPROACH: THE GREEN S : * DYADIC TECHNIQUE . * 84 (E) PROPAGATORS OR
GREEN S DYADIC .,: 85 (F) HUYGENS-FRESNEL PRINCIPLE ..*;...*..* 86 (G)
RESOLUTION OF THE LIPPMANN-SCHWINGER EQUATION . . . . . . . . . ...
..*. ! 87 (H) ALTERNATIVE DERIVATION OF THE. LIPPMANN-SCHWINGER
EQUATION... . 87 *: 4.5.3.4 COMPARISON BETWEEN RSPM AND DSIEM . . .
88 ****:. 4.5.3.5 THE MULTIPLE MULTIPOLE TECHNIQUE, (MMP) .. 90 CHAPTER
5 INVERSE PROBLEM AND APPARATUS FUNCTION 93 5 . 1 I N T R O D U C T I O
N . . . . . . . . . . . . . . . 9 3 5:2 I N V E R S E P R O B L E M S O
L U T I O N I N B A N D - L I M I T E D , F A R - F I E L D I M A G I N
G . . . 9 7 XVI CONTENTS 5.3 INVERSE PROPAGATOR AND RECIPROCITY THEOREM
98 5.3.1 RECIPROCITY THEOREM 98 5.4 INVERSE PROBLEM SOLUTION IN
NEAR-FIELD IMAGING 100 5.5 APPARATUS FUNCTIONS 100 5.5.1 IMPULSE
RESPONSE 101 5.5.2 TRANSFER FUNCTION 101 CHAPTER 6 CRITERIA OF QUALITY,
NOISE AND ARTIFACTS 103 6.1 DEGREES OF FREEDOM OF AN OPTICAL SYSTEM 103
6.1.1 GENERALIZATION OF LUKOSZ S APPROACH 104 6.1.2 FAR-FIELD CASE 105
6.1.3 NEAR-FIELD CASE 106 6.1.4 INFORMATION CAPACITY FOR NOISY COHERENT
SIGNALS 107 6.2 NOISE IN OPTICAL SYSTEMS 107 6.2.1 OPTICAL NOISES 108
6.2.1.1 SHOT NOISE 108 6.2.1.2 THERMAL (INCOHERENT) LIGHT 109 6.2.1.3
DARK CURRENT 109 6.2.1.4 PRACTICAL CASE 110 6.2.2 EXTERNAL NOISES ILL
6.3 ARTIFACTS 112 6.3.1 SCANNING MODES IN NEAR-FIELD MICROSCOPY 112
6.3.2 NOTION OF ARTIFACT 112 6.3.2.1 STRAIGHTFORWARD ARTIFACTS 114
6.3.2.2 INDIRECT ARTIFACTS 114 6.4 COMPARISON BETWEEN THE THREE SCANNING
MODE BEHAVIOURS . . . 115 6.4.1 INPUT PARAMETERS OF THE SIMULATION 115
6.4.2 CONSTANT DISTANCE MODE 117 6.4.3 CONSTANT HEIGHT MODE 118 6.4.4
CONSTANT INTENSITY MODE 119 6.5 NOTION OF RESOLUTION 123 6.5.1 DETECTION
123 6.5.2 LOCALIZATION 124 6.5.3 RESOLUTION 125 6.5.4 THE TWO-POINT
CRITERION 126 6.5.5 OTHER ESTIMATES OF RESOLUTION 127 6.5.5.1
FULL-WIDTH-AT-HALF-MAXIMUM MEASUREMENT OF THE POINT SPREAD FUNCTION 127
CONTENTS XVII 6.5.5.2 STEP SLOPE MEASUREMENT 128 6.5.5.3 FOURIER
SPECTRUM EXTENSION ESTIMATE 129 6.5.6 OPTICAL TRANSFER FUNCTION OTF 130
6.5.7 OTF IN NEAR-FIELD OPTICS 131 6.5.8 EXPERIMENTAL OTF IN NEAR-FIELD
OPTICS 132 6.5.8.1 MEASUREMENT OF FRINGE VISIBILITY 132 6.5.8.2
STATISTICAL PROPERTIES OF A RANDOM DISTRIBUTION OF SOURCES 132 6.5.8.3
RATIO OF OBJECT AND IMAGE SPECTRA 132 6.5.9 CONTRAST 133 6.5.9.1
NOISELESS IMAGES 133 6.5.9.2 NOISY IMAGES 134 6.5.10 NEW CRITERIA OF
QUALITY 136 CHAPTER 7 NANO-COLLECTORS AND NANO-EMITTERS 139 7.1
PRECURSORS 139 7.2 NEAR-FIELD COLLECTION AND EMISSION 140 7.2.1
PRINCIPLE 140 7.2.2 DISTANCE OF COLLECTION/EMISSION 141 7.2.3 SHAPE OF
NANO-COLLECTORS/EMITTERS 141 7.2.3.1 CONICAL SHAPES 142 7.2.3.2 LARGE
CONE ANGLES VERSUS SMALL ONES 142 7.2.3.3 PSEUDO-PARABOLOIDAL, COMPOUND
TIPS 143 7.2.3.4 OTHER SHAPES 144 7.3 VARIOUS TECHNOLOGIES 145 7.4 BARE
TAPERS 148 7.4.1 SHAPING TECHNIQUES 148 7.4.2 ETCHING TECHNIQUES 148
7.4.3 EFFECT OF PARAMETERS 149 7.4.4 MORE SOPHISTICATED PROCEDURES 150
7.4.5 HIGH APERTURE ANGLE CONICAL TIPS 151 7.4.6 HOT STRETCHING
TECHNIQUES 151 7.4.7 ADVANTAGES AND DRAWBACKS OF THE TWO TECHNIQUES ....
153 7.4.8 TAPERED METAL WIRE AND SILICON AFM TIPS 154 7.4.9 PYRAMIDAL
TIPS 155 7.5 COATED MATERIALS 157 7.5.1 FLAT NANO-APERTURES 158 7.5.2
TAPERED NANO-APERTURES 162 XVIII CONTENTS 7.5.2.1 TAPERED QUARTZ ROD . .
....... . .;* 162 7.5.2.2 MICRO-PIPETTE COATING . . . . . . . . 162
7.5.3 TAPERED/CLEAVED FIBRES ...:.._. 164 7.5.4 EFFICIENCY OF TAPERED
METAL COATED FIBRES . . . . . . . . . 166 7.5.5 LASER DAMAGES . . . . .
.,-.,. 166 7.5.6 REALIZATION OF THE APERTURE BY OTHER TECHNIQUES 167 , ,
7.5.6.1.. * RUBBING TECHNIQUE . . . . . . . . . 167 7.5.6.2 SOLID
ELECTROLYSIS 169 7.6 NANO-ANTENNA USED AS A NEAR-FIELD PERTURBING SYSTEM
170 7.7 VARIANT OF TAPERED FIBRES 171 7.8 CHEMICAL SENSORS USED AS
FLUORESCENT TIPS * . .-* 171 CHAPTER 8 INSTRUMENTATION 175 8.1 BASIC
STRUCTURE OF NEAR-FIELD OPTICAL MICROSCOPES 175 8.2 MECHANICAL PART .
176 8.2.1 TRANSLATION STAGE 176 8.2.1.1 PZT MATERIAL ,-, 176 8.2.1.2
PIEZO-ELECTRIC TUBES ......: 178 8.2.2 PRACTICAL CASE 179 8.2.3
TECHNIQUES FOR MACHINING THE PIEZO-ELECTRIC TUBE . . . . 179 8.2.3.1
MECHANICAL ETCHING . ,. .* 179 8.2.3.2 CHEMICAL ETCHING . 180 8.2.4
COMPENSATION OF THE THERMAL DRIFT 181 8.2.5 CONNECTION OF THE WIRES ON
THE ELECTRODES . 182 8.3 HOLDING OF THE NANO-COLLECTOR/EMITTER 182 8.3.1
FIBRE AS A NANO-COLLECTOR/EMITTER 182 8.3.2 OTHER COLLECTOR/EMITTERS 184
8.4 ANTI-VIBRATION DEVICES 184 8.4.1 DISTANCE CONTROL 185 8.4.1.1
OPTICAL CONTROL . . . . . . ... . . . . . . . . . 186 8.4.1.2 ELECTRON
TUNNELLING CONTROL . . 189 8.4.1.3 FORCE CONTROLS 189 8.4.1.4
SHEAR-FORCE CONTROL 189 8.4.1.5 METHODS OF MEASUREMENT 191 8.5 OPTICAL
PART . 192 8.5.1 SOURCE 192 8.5.2 DETECTOR ; . . . . 194 8.5.3 USUAL
OPTICAL AND OPTO-ELECTRONIC COMPONENTS 195 CONTENTS XIX 8.6 ELECTRONIC
STAGES . . 195 8.6.1 SYNCHRONOUS DETECTION 196 8.6.2 DISTANCE CONTROL:
THE P.I.D. DEVICE . ...- 196 8.6.2.1 NEW REGULATION CONCEPT . . . . . .
. ; 198 CHAPTER 9 MAIN NEAR-FIELD MICROSCOPE CONFIGURATIONS 201 9.1
TRANSMISSION MICROSCOPES . . . . : 202 9.2 REFLECTION MICROSCOPY . . . ;
204 9.3 TUNNELLING MICROSCOPY . 206 9.4 OPTICAL TUNNELLING MICROSCOPY
. ...; . . . . ; . 208 9.4.0.2 GUERRA S CONFIGURATION . . . . . . . . .
. . . . 208 9.4.0.3 SCANNING TUNNELLING OPTICAL MICROSCOPY STOM» OR
PSTM* . . . . . . . . . . . . . . . 208 9.4.0.4 INVERSE STOM/PSTM: THE
ISTOM OR TNOM . 210 9.5 PLASMON MICROSCOPY 212 9.6 HYBRID TECHNIQUES 213
9.6.1 NEAR-FIELD MICROSCOPY WITH SHEAR-FORCE CONTROL 213 9.6.2 CONTACT
NEAR-FIELD OPTICAL MICROSCOPY 214 CHAPTER 10 NEAR-FIELD IMAGE PROCESSING
215 10.1 GENERALITIES 215 10.1.1 LINEAR DISTORTIONS 215 10.1.2
NON-LINEAR DISTORTIONS . . . . . . . . . . . . 216 10.2 CORRECTION OF
DISTORTIONS 218 10.2.1 CORRECTION OF LINEAR DISTORTIONS 218 10.2.2
CORRECTION OF NON-LINEAR DISTORTIONS 220 10.2.3 CORRECTION OF TIP-SAMPLE
STICKING . . . . ! . . . . . . . . . 220 10.3 FILTERING PROCESS . . . .
. . . . . . . . . . . . . . . . . . . ! . . 220 10.3.1 DIRECTOR LOCAL
FILTERING . . ..; . . . . . . . . . . . . . . 220 10.3.1.1 LINEAR
FILTERING: CONVOLUTION FILTERING . . . . . 220 10.3.1.2 NON-LINEAR
FILTERING 223 10.3.1.3 NORMALIZATION PROCEDURES . . . . . . . . . . .
227 10.3.2 FOURIER OR RECIPROCAL FILTERING 227 10.4 KARHUNEN-LOEVE
TRANSFORM AND INFORMATION EXTRACTION ... . . 229 CHAPTER 11 APPLICATIONS
OF NEAR-FIELD MICROSCOPY 235 11.1 I N T R O D U C T I O N . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . 2 3 5 11.1.1 F I R S T A T T
E M P T S : T O P O G R A P H Y M E A S U R E M E N T S . . . . . . . .
2 3 6 XX CONTENTS 11.1.2 LOCAL INDEX VARIATION MEASUREMENT 236 11.1.2.1
FIRST CASE: SUB-WAVELENGTH SPATIAL VARITIONS . . 237 11.1.2.2 SECOND
CASE: VERY LOW INDEX VARIATIONS . . . . 237 11.1.2.3 SPATIALLY RESOLVED
SPECTROSCOPY 238 11.1.2.4 SUPERRESOLUTION FLUORESCENCE SNOM 241 11.1.2.5
BIOLOGICAL APPLICATIONS 241 11.2 LIGHT TRAPPING 242 11.3 CONCEPT OF
NANO-OPTICS 243 11.4 A SIMPLE CASE: THE FRUSTRATED REFLECTION BY A
SPHERE OR A TIP . . 244 11.5 A SECOND EXAMPLE: THE RESONANT TUNNELLING
EFFECT 244 11.6 A MORE SOPHISTICATED EXAMPLE: A SUB-WAVELENGTH PERIODIC
STRUCTURE 245 11.7 PHOTONIC TRANSFER THROUGH SEGMENTED OPTICAL
WAVEGUIDES . . . . 246 APPENDIX A BASIS OF OPTICS 249 A.0.1 UNIT SYSTEMS
249 A.I BASIC FUNCTIONS AND OPERATORS IN OPTICS 250 A. 1.1 REMINDER ON
VECTORIAL CALCULUS 250 A.I.1.1 NABLA OPERATOR 250 A.I.1.2 GRADIENT OF
SCALAR V 250 A.I.1.3 DIVERGENCE OF VECTOR U 251 A.I.1.4 ROTATIONAL OF
VECTOR U 251 A.I.1.5 SCALAR LAPLACIAN OF SCALAR V 251 A. 1.1.6 VECTORIAL
LAPLACIAN OF VECTOR U 251 A.1.2 RELATIONS CONNECTING GRADIENT,
DIVERGENCE AND ROTATIONAL 252 A.1.3 DYADIC ANALYSIS 252 A.2 MAXWELL S
EQUATIONS 253 A.2.1 MATERIAL EQUATIONS 254 A.2.2 MAXWELL S EQUATION IN
THE DYADIC SCHEME 254 A.3 WAVE EQUATION 255 A.3.1 THERE IS NO CHARGES OR
CURRENTS (G = 0 AND J = 0) . . . . 255 A.3.2 THE MEDIUM IS HOMOGENEOUS,
(/I AND E SPACE-INDEPENDENT) 255 A.3.3 THE MEDIUM IS HOMOGENEOUS AND
THERE IS NO CHARGES OR CURRENTS 256 A.3.4 CASE OF HARMONIC FIELDS 256
A.4 SCALAR AND VECTOR POTENTIALS 256 A.5 STATIC REGIMES 257 CONTENTS XXI
A.5.1 POISSON S AND LAPLACE S EQUATIONS 257 A.5.2 FIELD GENERATED BY A
SINGLE CHARGE 257 A.5.3 FLUX OF AN ELECTRIC FIELD THROUGH A SURFACE
ELEMENT . . . 258 A.5.4 GAUSS THEOREM 258 A.6 GREEN S FUNCTIONS AND
GREEN S THEOREM 260 A.6.1 GREEN S FUNCTIONS IN CLASSICAL POTENTIAL
THEORY 260 A.6.2 TIME DEPENDENT FIELDS: THE HELMHOLTZ EQUATION 261 A.6.3
GREEN S THEOREM 261 A.6.4 GREEN S DYADIC 262 A.7 EXPANSION OF A FIELD IN
TERM OF A SET OF PLANE WAVES 262 A.7.1 BASIS 263 A.7.2 ANGULAR SPECTRUM
EXPANSION (A.S.E.) 263 A.8 PROPAGATION OF LIGHT USING A.S.E. 265 A.9
ANALYSIS OF THE RESULTS 266 NOMENCLATURE 269 LIST OF ACRONYMS 271
GLOSSARY 275 INDEX 279 AUTHOR INDEX 289 BIBLIOGRAPHY 297
|
any_adam_object | 1 |
author | Courjon, Daniel |
author_facet | Courjon, Daniel |
author_role | aut |
author_sort | Courjon, Daniel |
author_variant | d c dc |
building | Verbundindex |
bvnumber | BV019334038 |
callnumber-first | T - Technology |
callnumber-label | TA418 |
callnumber-raw | TA418.9.N35 |
callnumber-search | TA418.9.N35 |
callnumber-sort | TA 3418.9 N35 |
callnumber-subject | TA - General and Civil Engineering |
classification_rvk | UH 6310 UH 6700 |
ctrlnum | (OCoLC)52388559 (DE-599)BVBBV019334038 |
dewey-full | 502.82 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 502 - Miscellany |
dewey-raw | 502.82 |
dewey-search | 502.82 |
dewey-sort | 3502.82 |
dewey-tens | 500 - Natural sciences and mathematics |
discipline | Allgemeine Naturwissenschaft Physik |
format | Book |
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id | DE-604.BV019334038 |
illustrated | Illustrated |
indexdate | 2024-07-09T19:57:51Z |
institution | BVB |
isbn | 186094258x |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-012798921 |
oclc_num | 52388559 |
open_access_boolean | |
owner | DE-703 DE-20 DE-522 DE-526 DE-634 DE-11 DE-355 DE-BY-UBR |
owner_facet | DE-703 DE-20 DE-522 DE-526 DE-634 DE-11 DE-355 DE-BY-UBR |
physical | XXI, 317 S. Ill., graph. Darst. |
publishDate | 2003 |
publishDateSearch | 2003 |
publishDateSort | 2003 |
publisher | Imperial College Press |
record_format | marc |
spelling | Courjon, Daniel Verfasser aut Near-field microscopy and near-field optics Daniel Courjon Near field microscopy and near field optics London Imperial College Press 2003 XXI, 317 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Hier auch später erschienene, unveränderte Nachdrucke Microscopie en champ proche Optique Near-field microscopy Optics Nahfeldoptik (DE-588)4739877-2 gnd rswk-swf Rastersondenmikroskopie (DE-588)4330328-6 gnd rswk-swf Rastersondenmikroskopie (DE-588)4330328-6 s DE-604 Nahfeldoptik (DE-588)4739877-2 s http://www.gbv.de/dms/bs/toc/324860854.pdf Inhaltsverzeichnis GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012798921&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Courjon, Daniel Near-field microscopy and near-field optics Microscopie en champ proche Optique Near-field microscopy Optics Nahfeldoptik (DE-588)4739877-2 gnd Rastersondenmikroskopie (DE-588)4330328-6 gnd |
subject_GND | (DE-588)4739877-2 (DE-588)4330328-6 |
title | Near-field microscopy and near-field optics |
title_alt | Near field microscopy and near field optics |
title_auth | Near-field microscopy and near-field optics |
title_exact_search | Near-field microscopy and near-field optics |
title_full | Near-field microscopy and near-field optics Daniel Courjon |
title_fullStr | Near-field microscopy and near-field optics Daniel Courjon |
title_full_unstemmed | Near-field microscopy and near-field optics Daniel Courjon |
title_short | Near-field microscopy and near-field optics |
title_sort | near field microscopy and near field optics |
topic | Microscopie en champ proche Optique Near-field microscopy Optics Nahfeldoptik (DE-588)4739877-2 gnd Rastersondenmikroskopie (DE-588)4330328-6 gnd |
topic_facet | Microscopie en champ proche Optique Near-field microscopy Optics Nahfeldoptik Rastersondenmikroskopie |
url | http://www.gbv.de/dms/bs/toc/324860854.pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012798921&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT courjondaniel nearfieldmicroscopyandnearfieldoptics |
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