Magnetic Microscopy of Nanostructures:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | German |
Veröffentlicht: |
Berlin [u.a.]
Springer
2005
|
Schriftenreihe: | NanoScience and Technology
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 312 S. Ill., graph. Darst. |
ISBN: | 3540401865 |
Internformat
MARC
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Datensatz im Suchindex
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adam_text | CONTENTS 1 IMAGING MAGNETIC MICROSPECTROSCOPY W. KUCH 1 1.1
MICROSPECTROSCOPY AND SPECTROMICROSCOPY - AN OVERVIEW 2 1.1.1 SCANNING
TECHNIQUES 2 1.1.2 IMAGING TECHNIQUES 3 1.2 BASICS 5 1.2.1 X-RAY
MAGNETIC CIRCULAR DICHROISM 6 1.2.2 PHOTOELECTRON EMISSION MICROSCOPY 9
1.3 ABOUT DOING XMCD-PEEM MICROSPECTROSCOPY 11 1.3.1 EXPERIMENT H 1.3.2
DATA ANALYSIS 13 1.4 SPECIFIC EXAMPLES 15 1.4.1 ULTRATHIN FCC FE FILMS
15 1.4.2 SPIN REORIENTATION TRANSITION IN CO/NI BILAYERS 19 1.5 SUMMARY
AND OUTLOOK 23 REFERENCES 24 2 STUDY OF FERROMAGNET-ANTIFERROMAGNET
INTERFACES USING X-RAY PEEM A. SCHOLL, H. OHLDAG, F. NOLTING, S. ANDERS,
AND J. STOEHR 29 2.1 INTRODUCTION 29 2.2 PHOTOEMISSION ELECTRON
MICROSCOPY 31 2.2.1 X-RAY ABSORPTION SPECTROSCOPY 32 2.2.2 X-RAY
MAGNETIC LINEAR DICHROISM (XMLD) 33 2.2.3 X-RAY MAGNETIC CIRCULAR
DICHROISM (XMCD) 34 2.2.4 TEMPERATURE DEPENDENCE OF X-RAY MAGNETIC
DICHROISM 34 2.2.5 EXPERIMENT 35 2.3 ANTIFERROMAGNETIC STRUCTURE OF
LAFE0 3 THIN FILMS 37 2.4 EXCHANGE COUPLING AT THE CO/NIO(001) INTERFACE
41 2.4.1 ANGULAR DEPENDENCE OF DOMAIN CONTRAST IN NIO(OOL) 42 2.4.2
POLARIZATION DEPENDENCE OF DOMAIN CONTRAST 43 VIII CONTENTS 2.4.3
COUPLING BETWEEN CO AND NIO-AFM REORIENTATION 44 2.4.4 INTERFACIAL SPIN
POLARIZATION IN CO/NIO(001) 46 2.5 SUMMARY 47 REFERENCES 48 3 TIME
DOMAIN OPTICAL IMAGING OF FERROMAGNETODYNAMICS B.C. CHOI AND M.R.
FREEMAN 51 3.1 INTRODUCTION 51 3.1.1 HISTORICAL BACKGROUND OF
TIME-RESOLVED TECHNIQUES 52 3.2 INSTRUMENTATION 54 3.2.1 PHYSICAL
PRINCIPLE OF MAGNETO-OPTIC EFFECT 54 3.2.2 TIME-RESOLVED EXPERIMENTS 56
3.2.3 EXPERIMENTAL APPARATUS 57 3.3 REPRESENTATIVE RESULTS IN THIN FILM
MICROSTRUCTURES 61 3.3.1 PICOSECOND TIME-RESOLVED MAGNETIZATION REVERSAL
DYNAMICS .. 61 3.3.2 PRECESSIONAL MAGNETIZATION REVERSAL AND DOMAIN WALL
OSCILLATION 63 3.4 CONCLUSION AND OUTLOOK 64 REFERENCES 65 4 LORENTZ
MICROSCOPY A.K. PETFORD-LONG AND J.N. CHAPMAN 67 4.1 INTRODUCTION 67 4.2
EXPERIMENTAL REQUIREMENTS 68 4.2.1 BASIC INSTRUMENTAL REQUIREMENTS 68
4.2.2 SPECIMEN REQUIREMENTS 69 4.3 BASIC THEORY 70 4.4 IMAGING MODES IN
LORENTZ MICROSCOPY 71 4.4.1 FRESNEL MODE 72 4.4.2 FOUCAULT MODE 73 4.4.3
LOW-ANGLE ELECTRON DIFFRACTION 74 4.4.4 DIFFERENTIAL PHASE CONTRAST
(DPC) IMAGING 76 4.4.5 ELECTRON HOLOGRAPHY 80 4.4.6 IN-SITU MAGNETIZING
EXPERIMENTS - USE OF THE TEM AS A LABORATORY 80 4.5 APPLICATION TO
SPIN-VALVES AND SPIN TUNNEL JUNCTIONS 82 4.6 SUMMARY AND CONCLUSIONS 85
REFERENCES 85 5 ELECTRON HOLOGRAPHY OF MAGNETIC NANOSTRUCTURES M.R.
MCCARTNEY, R.E. DUNIN-BORKOWSKI, AND D.J. SMITH 87 5.1 INTRODUCTION 87
5.2 BASIS OF ELECTRON HOLOGRAPHY 89 5.2.1 THEORETICAL BACKGROUND 89
CONTENTS IX 5.2.2 EXPERIMENTAL SETUP 92 5.2.3 PRACTICAL CONSIDERATIONS
93 5.2.4 APPLICATIONS 94 5.3 APPLICATIONS TO MAGNETIC MATERIALS 95 5.3.1
FEPT THIN FILMS 95 5.3.2 NDFEB HARD MAGNETS 96 5.4 MAGNETIC
NANOSTRUCTURES 97 5.4.1 CO SPHERES 97 5.4.2 MAGNETOTACTIC BACTERIA 99
5.4.3 PATTEMED NANOSTRUCTURES 100 5.5 OUTLOOK 106 REFERENCES 107 6
SPLEEM E. BAUER HL 6.1 INTRODUCTION HL 6.2 PHYSICAL BASIS OF
BEAM-SPECIMEN INTERACTIONS 112 6.3 EXPERIMENTAL SETUP AND PROCEDURE 119
6.4 APPLICATIONS 123 6.4.1 SINGLE LAYERS 123 6.4.2 NONMAGNETIC
OVERLAYERS 128 6.4.3 SANDWICHES 129 6.4.4 OTHER TOPICS 132 6.5 SUMMARY
133 REFERENCES 134 7 SEMPA STUDIES OF THIN FILMS, STRUCTURES, AND
EXCHANGE COUPLED LAYERS H.P. OEPEN AND H. HOPSTER 137 7.1 INTRODUCTION
137 7.2 INSTRUMENTATION 139 7.2.1 BASICS: SECONDARY ELECTRON EMISSION
139 7.2.2 SPIN-POLARIZATION ANALYZER 143 7.2.3 ELECTRON COLUMN 145 7.2.4
POLARIZATION VECTOR ANALYSIS 147 7.3 CASE STUDIES 148 7.3.1 ULTRATHIN
FILMS 148 7.3.2 FILMS WITH PERPENDICULAR MAGNETIZATION 149 7.3.3 FILMS
WITH IN-PLANE MAGNETIZATION 155 7.3.4 EXCHANGE COUPLED FILMS 157 7.3.5
DECORATION TECHNIQUE 160 7.3.6 IMAGING IN MAGNETIC FIELDS 162 7.4
CONCLUSIONS 164 REFERENCES 164 X CONTENTS 8 SPIN-SEMOFSTORAGE MEDIA K.
KOIKE ^ FI G 8.1 INTRODUCTION J^O 8.2 HDD RECORDING MEDIA 270 8.3
OBLIQUELY EVAPORATED RECORDING MEDIA 172 8.4 MAGNETO-OPTICAL RECORDING
MEDIA 176 8.5 CONCLUDING REMARKS 17G REFERENCES , 7 O 9 HIGH RESOLUTION
MAGNETIC IMAGING BY LOCAL T INNELING MAGNETORESISTANCE W. WULFHEKEL 18]
9.1 INTRODUCTION 18 J 9.2 EXPERIMENTAL SETUP 18 5 9.3 MAGNETIC SWITCHING
AND MAGNETOSTRICTION OF THE TIP 187 9.4 MAGNETIC IMAGING OF FERROMAGNETS
189 9.5 MAGNETIC SUSCEPTIBILITY 1 95 9.6 THE CONTRAST MECHANISM 1 96 9.7
CONCLUSIONS AND OUTLOOK 200 REFERENCES ^M 10 SPIN-POLARIZED SCANNING
LUNNELING SPECTROSCOPY M. BODE AND R. WIESENDANGER 203 10.1 INTRODUCTION
203 10.2 EXPERIMENTAL SETUP 205 10.3 EXPERIMENTS ON GD(0001) 206 10.4
DOMAIN AND DOMAIN-WALL STUDIES ON FERROMAGNETS 210 10.5 SURFACE
SPIN-STRUCTURE STUDIES OF ANTIFERROMAGNETS 215 CONCLUSIONS 299
REFERENCES 222 11 MAGNETIC FORCE MICROSCOPY: IMAGES OF NANOSTRUCTURES
AND CONTRAST MODELING A. THIAVILLE, J. MILTAT, AND J.M. GARCIA 225 11.1
INTRODUCTION: THE MAGNETIC FORCE MICROSCOPE 225 11.2 PRINCIPLE OF MFM
226 11.2.1 MFM LAYOUT [][[][[[................. 226 11.2.2 MODES OF
OPERATION 228 11.3 GALLERY OF NANOSTRUCTURES MFM IMAGES 230 11.3.1
ULTRATHIN FILMS . . . . . . . . 230 11.3.2 NANOPARTICLES 231 11.3.3
NANOWIRES 232 11.3.4 PATTERNED ELEMENTS 232 11.4 MFM CONTRAST IN ABSENCE
OF PERTURBATIONS 234 CONTENTS XI 11.4.1 TWO-DIMENSIONAL CASE 235 11.4.2
ONE-DIMENSIONAL CASE 236 11.4.3 MFM AS A CHARGE MICROSCOPY 240 11.5 MFM
CONTRAST IN THE PRESENCE OF PERTURBATIONS 242 11.5.1 TIP STRAY FIELD
VALUES 242 11.5.2 FORCES IN THE CASE OF PERTURBATION 243 11.5.3
PERTURBATIONS IN PATTERNED PERMALLOY ELEMENTS 245 11.6 CONCLUSION AND
PERSPECTIVES 248 REFERENCES 249 12 MAGNETIC FORCE MICROSCOPY - TOWARDS
HIGHER RESOLUTION L. ABELMANN, A. VAN DEN BOS, C. LODDER 253 12.1
PRINCIPLE OF MFM 253 12.1.1 MODE OF OPERATION 254 12.1.2 INSTRUMENTATION
261 12.2 MFM IN MAGNETIC DATA STORAGE RESEARCH 263 12.3 LIMITS OF
RESOLUTION IN MFM 265 12.3.1 CRITICAL WAVELENGTH 265 12.3.2 THERMAL
NOISE LIMITED RESOLUTION 267 12.4 TIP-SAMPLE DISTANCE CONTROL 273 12.5
TIPS 276 12.5.1 IDEAL TIP SHAPE 276 12.5.2 HANDMADE TIPS 277 12.5.3
COATING OF AFM TIPS 278 12.5.4 TIP PLANES: THE CANTICLEVER CONCEPT 279
REFERENCES 282 13 SCANNING PROBE METHODS FOR MAGNETIC IMAGING U.
HARTMANN 285 13.1 GENERAL STRATEGIES IN SCANNING PROBE MICROSCOPY 286
13.2 PROBE-SAMPLE INTERACTIONS SUITABLE FOR MAGNETIC IMAGING 287 13.3
SCANNING NEAR-FIELD MAGNETO-OPTIC MICROSCOPY 290 13.4 SCANNING SQUID
MICROSCOPY 292 13.4.1 SQUID BASICS 292 13.4.2 CONVENTIONAL APPROACHES
294 13.4.3 FLUX-GUIDED SCANNING SQUID MICROSCOPY 296 13.5 MAGNETIC
RESONANCE FORCE MICROSCOPY 300 13.5.1 BASIC CONCEPTS 300 13.5.2 GLOBAL
EXPERIMENTS 302 13.5.3 MECHANICALLY DETECTED MAGNETIC RESONANCE AS AN
IMAGING TECHNIQUE 303 13.6 CONCLUSIONS AND OUTLOOK 304 REFERENCES 305
INDEX 309
|
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id | DE-604.BV017304495 |
illustrated | Illustrated |
indexdate | 2024-07-09T19:16:22Z |
institution | BVB |
isbn | 3540401865 |
language | German |
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physical | XVI, 312 S. Ill., graph. Darst. |
publishDate | 2005 |
publishDateSearch | 2005 |
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publisher | Springer |
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series2 | NanoScience and Technology |
spelling | Magnetic Microscopy of Nanostructures H. Hopster ... (eds.) Berlin [u.a.] Springer 2005 XVI, 312 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier NanoScience and Technology Magnetic force microscopy Nanostructures Nanostruktur (DE-588)4204530-7 gnd rswk-swf Mikroskopie (DE-588)4039238-7 gnd rswk-swf Spektroskopie (DE-588)4056138-0 gnd rswk-swf Magnetismus (DE-588)4037021-5 gnd rswk-swf Nanostruktur (DE-588)4204530-7 s Magnetismus (DE-588)4037021-5 s Mikroskopie (DE-588)4039238-7 s Spektroskopie (DE-588)4056138-0 s DE-604 Hopster, Herbert Sonstige oth GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010430168&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Magnetic Microscopy of Nanostructures Magnetic force microscopy Nanostructures Nanostruktur (DE-588)4204530-7 gnd Mikroskopie (DE-588)4039238-7 gnd Spektroskopie (DE-588)4056138-0 gnd Magnetismus (DE-588)4037021-5 gnd |
subject_GND | (DE-588)4204530-7 (DE-588)4039238-7 (DE-588)4056138-0 (DE-588)4037021-5 |
title | Magnetic Microscopy of Nanostructures |
title_auth | Magnetic Microscopy of Nanostructures |
title_exact_search | Magnetic Microscopy of Nanostructures |
title_full | Magnetic Microscopy of Nanostructures H. Hopster ... (eds.) |
title_fullStr | Magnetic Microscopy of Nanostructures H. Hopster ... (eds.) |
title_full_unstemmed | Magnetic Microscopy of Nanostructures H. Hopster ... (eds.) |
title_short | Magnetic Microscopy of Nanostructures |
title_sort | magnetic microscopy of nanostructures |
topic | Magnetic force microscopy Nanostructures Nanostruktur (DE-588)4204530-7 gnd Mikroskopie (DE-588)4039238-7 gnd Spektroskopie (DE-588)4056138-0 gnd Magnetismus (DE-588)4037021-5 gnd |
topic_facet | Magnetic force microscopy Nanostructures Nanostruktur Mikroskopie Spektroskopie Magnetismus |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010430168&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT hopsterherbert magneticmicroscopyofnanostructures |