Magnonics: from fundamentals to applications
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2013
|
Schriftenreihe: | Topics in applied physics
125 |
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XIX, 262 S. Ill., graph. Darst. |
ISBN: | 3642302467 9783642302466 9783642302473 |
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Datensatz im Suchindex
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adam_text |
IMAGE 1
CONTENTS
PART I MAGNONIC MODES IN NANOMAGNETS, CHAOTIC AND COHERENT MAGNONIC
STATES
1 SPIN-WAVE EIGEN-MODES IN A NORMALLY MAGNETIZED NANO-PILLAR . . . 3
V.V. NALETOV, G. DE LOUBENS, S. BORLENGHI, AND O. KLEIN 1.1 INTRODUCTION
3
1.2 IDENTIFICATION OF THE SPIN-WAVE MODES 5
1.2.1 SINGLE MAGNETIC DISK 6
1.2.2 DOUBLE MAGNETIC DISKS 7
1.2.3 MICROMAGNETIC SIMULATIONS VS. MECHANICAL-FMR EXPERIMENTS 9
1.3 CONCLUSION 14
REFERENCES 14
2 BOTTOM UP MAGNONICS: MAGNETIZATION DYNAMICS O F INDIVIDUAL NANOMAGNETS
17
P.S. KEATLEY, P. GANGMEI, M. DVORNIK, R.J. HICKEN, J. GROLLIER, C.
ULYSSE, J.R. CHILDRESS, AND J.A. KATINE 2.1 INTRODUCTION 17
2.2 EXPERIMENTAL METHODS AND SAMPLE DETAILS 18
2.3 RESULTS AND DISCUSSION 20
2.4 SUMMARY 27
REFERENCES 27
3 FEATURES OF CHAOTIC SPIN WAVES IN MAGNETIC FILM FEEDBACK RINGS 29
AARON M. HAGERSTROM AND MINGZHONG WU 3.1 INTRODUCTION 29
3.2 EXPERIMENTS 3 0
3.3 FREQUENCY-AND TIME-DOMAIN SIGNALS 32
3.4 AMBIGUITY FUNCTIONS 32
3.5 TUNING O F AMBIGUITY FUNCTION PROPERTIES VIA RING GAIN 33
3.6 EFFECTS O F SIGNAL DURATION ON AMBIGUITY FUNCTION 35
XI
HTTP://D-NB.INFO/1021599026
IMAGE 2
XII C O N T E N T S
3.7 CROSS AMBIGUITY FUNCTION 35
3.8 CONCLUSION 37
REFERENCES 38
4 MAGNON COHERENT STATES AND CONDENSATES 39
SERGIO M. REZENDE 4.1 INTRODUCTION 39
4.2 COHERENT MAGNON STATES 41
4.3 LINEAR EXCITATION O F MAGNONS BY A MICROWAVE FIELD 43
4.4 MICROWAVE EXCITATION O F PARAMETRIC MAGNONS IN THIN FILMS . . . . 44
4.5 BOSE-EINSTEIN CONDENSATION O F A MICROWAVE DRIVEN INTERACTING MAGNON
GAS 4 6
4.5.1 DYNAMICS O F THE MICROWAVE DRIVEN MAGNON GAS IN K SPACE 4 6 4.5.2
COHERENCE O F THE MAGNON CONDENSATE 4 9
4.5.3 WAVEFUNCTION O F THE MAGNON CONDENSATE 51
4.6 SUMMARY 53
REFERENCES 54
PART II PROBING AND MANIPULATION O F MAGNONS WITH FEMTOSECOND LIGHT AND
POLARIZED ELECTRONS: EXPERIMENT AND SIMULATIONS
5 THE ROLE OF ANGULAR MOMENTUM IN ULTRAFAST MAGNETIZATION DYNAMICS 59
ANDREI KIRILYUK, ALEXEY V. KIMEL, AND THEO RASING 5.1 INTRODUCTION 59
5.2 PRECESSION IN FERRIMAGNETIC MATERIALS 6 0
5.3 LASER-INDUCED MAGNETIZATION REVERSAL 63
5.4 TRANSIENT FERROMAGNETIC STATE 6 4
5.5 CONCLUSIONS 68
REFERENCES 6 9
6 PHOTO-MAGNONICS 71
BENJAMIN LENK, FABIAN GARBS, HENNING ULRICHS, NILS ABELING, AND MARKUS
MIINZENBERG 6.1 INTRODUCTION 71
6.1.1 SPIN-WAVE MODES IN A THIN FERROMAGNETIC FILM 72
6.2 SAMPLES AND EXPERIMENTS 73
6.2.1 THIN-FILM MAGNETIZATION DYNAMICS 73
6.3 BLOCH-LIKE MODES IN COFEB ANTIDOT LATTICES 74
6.3.1 EFFECTS O F ANTIDOT-LATTICE SYMMETRY 76
6.4 SPIN-WAVE SPECTRA FROM PLANE-WAVE CALCULATIONS 77
6.5 LOCALIZED MODES IN NICKEL ANTIDOT LATTICES 78
6.6 OUTLOOK: MAGNONIC CONTROL OVER SPIN WAVES 79
REFERENCES 80
IMAGE 3
CONTENTS XIII
7 PROBING MAGNONS BY SPIN-POLARIZED ELECTRONS 83
K. ZAKERI AND J. KIRSCHNER 7.1 INTRODUCTION 83
7.2 BASIC CONCEPTS 84
7.2.1 SPIN WAVES 85
7.2.2 STONER EXCITATIONS 86
7.2.3 HEISENBERG DESCRIPTION O F MAGNONS 88
7.2.4 SPIN DEPENDENCE OF ELECTRON SCATTERING 89
7.3 SPIN-POLARIZED ELECTRON ENERGY LOSS SPECTROSCOPY 92
7.4 RECENT EXPERIMENTAL ACHIEVEMENTS 9 4
7.4.1 MAGNON EXCITATIONS IN FERROMAGNETIC THIN FILMS 9 4
7.4.2 DISTINGUISHING BETWEEN MAGNONS AND PHONONS 95
7.5 CONCLUSION 97
REFERENCES 97
8 MICROMAGNETIC SIMULATIONS IN MAGNONICS 101
M. DVORNIK, Y. AU, AND V.V. KRUGLYAK 8.1 INTRODUCTION 101
8.2 REAL-SPACE-TIME DOMAIN ANALYSIS: MAGNONIC DEVICES 102
8.3 REAL-SPACE-FREQUENCY DOMAIN ANALYSIS: MAGNONIC NORMAL MODES 105
8.4 RECIPROCAL-SPACE-FREQUENCY DOMAIN: MAGNONIC DISPERSION AND
SCATTERING PARAMETERS 108
8.5 SEMARGL 112
8.6 CONCLUSIONS AND OUTLOOK 113
REFERENCES 114
PART III MAGNON SPINTRONICS: SPIN CURRENTS, SPIN PUMPING AND MAGNONIC
SPIN-TORQUE DEVICES
9 SPIN WAVES, SPIN CURRENTS AND SPIN SEEBECK EFFECT 119
HIROTO ADACHI AND SADAMICHI MAEKAWA 9.1 INTRODUCTION 119
9.2 LOCAL PICTURE O F THERMAL SPIN INJECTION 120
9.3 MAGNON-DRIVEN SPIN SEEBECK EFFECT 123
9.4 PHONON-DRAG SPIN SEEBECK EFFECT 125
9.5 CONCLUSION 127
REFERENCES - 127
10 SPIN PUMPING AT YTRIUM IRON GARNET INTERFACES 129
CAPUCINE BURROWES AND BRETISLAV HEINRICH 10.1 INTRODUCTION 129
10.2 THEORY O F SPIN PUMPING 130
10.2.1 SPIN TRANSPORT BY SPIN DIFFUSION IN A N M 132
10.2.2 SPIN TRANSPORT IN THE PRESENCE OF PARAMAGNONS 134
10.3 EXPERIMENTAL RESULTS AND DISCUSSION 134
10.3.1 FMR 134
IMAGE 4
X I V C O N T E N T S
10.3.2 YIG/AU 135
10.3.3 YIG/PD 139
REFERENCES 140
11 SPIN-TORQUE MICROWAVE DETECTORS 143
OLEKSANDR V. PROKOPENKO, ILYA N. KRIVOROTOV, THOMAS J. MEITZLER, ELENA
BANKOWSKI, VASIL S. TIBERKEVICH, AND ANDREI N. SLAVIN 11.1 INTRODUCTION
144
11.2 BASIC PHYSICS O F STT AND T M R 145
11.3 SMALL-ANGLE IN-PLANE DYNAMICAL REGIME OF STMD OPERATION . . 146
11.3.1 ANALYTICAL THEORY O F NOISE PROPERTIES O F A STMD IN IP-REGIME
147
11.3.2 THE PERFORMANCE OF A STMD IN THE PRESENCE O F THERMAL NOISE 153
11.4 LARGE-ANGLE OUT-OF-PLANE DYNAMICAL REGIME OF STMD OPERATION 155
11.4.1 ANALYTICAL DESCRIPTION O F OOP-REGIME 155
11.4.2 PERFORMANCE O F A STMD IN OOP-REGIME 158
11.5 SUMMARY 160
REFERENCES 161
12 SPIN-WAVE EMISSION FROM SPIN-TORQUE NANO-OSCILLATORS AND ITS CONTROL
BY MICROWAVE PUMPING 163
VLADISLAV E. DEMIDOV, SERGEI URAZHDIN, AND SERGEJ O. DEMOKRITOV 12.1
INTRODUCTION 163
12.2 STUDIED SAMPLES AND THEIR ELECTRONIC CHARACTERIZATION 164
12.3 BLS CHARACTERIZATION OF THE EMITTED SPIN WAVES 166
12.4 RELATIONSHIP BETWEEN THE EMISSION CHARACTERISTICS AND THE SPIN-WAVE
SPECTRUM 168
12.5 NONLINEAR FREQUENCY CONVERSION IN STNO 170
12.6 EFFECT O F THE MICROWAVE PUMPING ON THE SPIN-WAVE EMISSION
CHARACTERISTICS 172
12.7 SUMMARY 173
REFERENCES 174
13 NANO-CONTACT SPIN-TORQUE OSCILLATORS AS MAGNONIC BUILDING BLOCKS 177
STEFANO BONETTI AND JOHAN AKERMAN 13.1 INTRODUCTION 177
13.1.1 MAGNONICS AND MAGNONIC DEVICES 177
13.1.2 SPIN-TRANSFER TORQUE 178
13.1.3 SCOPE 178
13.2 FABRICATION O F NANO-CONTACT STOS 179
13.3 SPIN WAVE DYNAMICS IN NANO-CONTACT STOS 180
13.3.1 FUNDAMENTALS 180
13.3.2 PROPAGATING WAVES AS MAGNONIC SIGNALS 181
13.4 NANO-CONTACT-BASED MAGNONIC BUILDING BLOCKS 183
13.4.1 SPIN WAVE INJECTORS 183
IMAGE 5
CONTENTS X V
13.4.2 SPIN WAVE MANIPULATORS 184
13.4.3 SPIN WAVE DETECTORS 184
13.5 CONCLUSIONS 185
REFERENCES 185
PART IV STATIC AND DYNAMIC MAGNONIC CRYSTALS
14 SPIN WAVES IN ARTIFICIAL CRYSTALS AND METAMATERIALS CREATED FROM
NANOPATTERNED NIXOFE2O ANTIDOT LATTICES 191
SEBASTIAN NEUSSER, GEORG DUERR, RUPERT HUBER, AND DIRK GRUNDLER 14.1
INTRODUCTION 191
14.2 NANOFABRICATION AND ALL-ELECTRICAL SPIN-WAVE SPECTROSCOPY . . . .
192 14.3 ANTIDOT LATTICES IN THE SHORT WAVELENGTH LIMIT: BANDGAP
MATERIALS 193 14.3.1 LARGE-PERIOD ANTIDOT LATTICE: FORBIDDEN FREQUENCY
GAPS DUE TO BRAGG REFLECTION 193
14.3.2 SHORT-PERIOD ANTIDOT LATTICE: MINIBAND FORMATION DUE TO COHERENT
COUPLING OF EDGE MODES 196
14.4 ANTIDOT LATTICE IN THE LONG WAVELENGTH LIMIT: EFFECTIVE-MEDIA
CONCEPT 198
14.4.1 EFFECTIVE MAGNETIZATION OF A NANOPATTERNED ANTIDOT LATTICE 198
14.4.2 TRANSMISSION O F SPIN WAVES ACROSS THE BOUNDARY O F AN ANTIDOT
LATTICE 199
14.5 CONCLUSIONS 201
REFERENCES 201
15 SPIN WAVE BAND STRUCTURE IN TWO-DIMENSIONAL MAGNONIC CRYSTALS . 205
G. GUBBIOTTI, S. TACCHI, M. MADAMI, G. CARLOTTI, R. ZIVIERI, F.
MONTONCELLO, F. NIZZOLI, AND L. GIOVANNINI 15.1 INTRODUCTION 206
15.2 SAMPLE DETAILS AND EXPERIMENT 207
15.3 THEORETICAL DESCRIPTION: DYNAMICAL MATRIX METHOD APPLIED TO 2D MCS
208
15.4 RESULTS AND DISCUSSION 210
15.4.1 SAMPLE #1: BIDIMENSIONAL ARRAY OF DISKS 210
15.4.2 SAMPLE #2: BIDIMENSIONAL ARRAY OF CIRCULAR HOLES 213 15.5 SUMMARY
219
REFERENCES 219
16 NORMAL MODE THEORY FOR MAGNONIC CRYSTAL WAVEGUIDE 223
N.Y. GRIGORYEVA AND B.A. KALINIKOS 16.1 INTRODUCTION 223
16.2 LANDAU-LIFSHITZ EQUATION O F MOTION FOR SPACE HARMONICS IN MAGNONIC
CRYSTAL WAVEGUIDE 227
16.3 GENERAL DISPERSION RELATION FOR DIPOLE-EXCHANGE SPIN WAVES IN
MAGNONIC CRYSTAL WAVEGUIDE 232
16.4 EXAMPLE OF THEORY APPLICATION 237
16.5 CONCLUSION 239
REFERENCES 239
IMAGE 6
XVI C O N T E N T S
17 THE DYNAMIC MAGNONIC CRYSTAL: NEW HORIZONS IN ARTIFICIAL CRYSTAL
BASED SIGNAL PROCESSING 243
ANDRII V. CHUMAK, ALEXY D. KARENOWSKA, ALEXANDER A. SERGA, AND BURKARD
HILLEBRANDS 17.1 INTRODUCTION 243
17.2 THE STATE-OF-THE-ART IN MAGNONIC CRYSTAL SCIENCE 244
17.3 THE DESIGN O F DYNAMIC MAGNONIC CRYSTALS 245
17.4 THE ENGINEERING OF DYNAMIC MAGNONIC CRYSTAL CHARACTERISTICS . . 247
17.5 A SIGNAL SEE-SAW: OSCILLATORY INTER-MODAL ENERGY EXCHANGE IN THE
DYNAMIC MAGNONIC CRYSTAL 249
17.6 FREQUENCY CONVERSION AND TIME REVERSAL IN THE DYNAMIC MAGNONIC
CRYSTAL 252
17.7 CONCLUDING COMMENTS 255
REFERENCES 255
INDEX 259 |
any_adam_object | 1 |
author2 | Demokritov, Sergej O. |
author2_role | edt |
author2_variant | s o d so sod |
author_facet | Demokritov, Sergej O. |
building | Verbundindex |
bvnumber | BV040439730 |
classification_rvk | UD 9450 UP 3735 UP 6700 |
ctrlnum | (OCoLC)816051149 (DE-599)DNB1021599026 |
dewey-full | 538.4 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 538 - Magnetism |
dewey-raw | 538.4 |
dewey-search | 538.4 |
dewey-sort | 3538.4 |
dewey-tens | 530 - Physics |
discipline | Physik |
format | Book |
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series2 | Topics in applied physics |
spelling | Magnonics from fundamentals to applications Sergej O. Demokritov ... ed. Berlin [u.a.] Springer 2013 XIX, 262 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Topics in applied physics 125 Literaturangaben Nanostruktur (DE-588)4204530-7 gnd rswk-swf Magnon (DE-588)4312920-1 gnd rswk-swf (DE-588)1071861417 Konferenzschrift 2011 Recife gnd-content Magnon (DE-588)4312920-1 s Nanostruktur (DE-588)4204530-7 s DE-604 Demokritov, Sergej O. edt Topics in applied physics 125 (DE-604)BV008007504 125 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=4012844&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=025287588&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Magnonics from fundamentals to applications Topics in applied physics Nanostruktur (DE-588)4204530-7 gnd Magnon (DE-588)4312920-1 gnd |
subject_GND | (DE-588)4204530-7 (DE-588)4312920-1 (DE-588)1071861417 |
title | Magnonics from fundamentals to applications |
title_auth | Magnonics from fundamentals to applications |
title_exact_search | Magnonics from fundamentals to applications |
title_full | Magnonics from fundamentals to applications Sergej O. Demokritov ... ed. |
title_fullStr | Magnonics from fundamentals to applications Sergej O. Demokritov ... ed. |
title_full_unstemmed | Magnonics from fundamentals to applications Sergej O. Demokritov ... ed. |
title_short | Magnonics |
title_sort | magnonics from fundamentals to applications |
title_sub | from fundamentals to applications |
topic | Nanostruktur (DE-588)4204530-7 gnd Magnon (DE-588)4312920-1 gnd |
topic_facet | Nanostruktur Magnon Konferenzschrift 2011 Recife |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=4012844&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=025287588&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV008007504 |
work_keys_str_mv | AT demokritovsergejo magnonicsfromfundamentalstoapplications |