Disorder and strain-induced complexity in functional materials

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Weitere Verfasser: Kakeshita, Tomoyuki (HerausgeberIn)
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Sprache:English
Veröffentlicht: Berlin [u.a.] Springer 2012
Schriftenreihe:Springer series in materials science 148
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Datensatz im Suchindex

_version_ 1805145521879252992
adam_text IMAGE 1 CONTENTS 1 DOMAIN BOUNDARY ENGINEERING IN FERROIC AND MULTIFERROIC MATERIALS: A SIMPLE INTRODUCTION 1 EKHARD K.H. SALJE AND JASON C. LASHLEY 1.1 INTRODUCTION 1 1.2 MULTIFERROIC DOMAIN BOUNDARIES 2 1.3 HIGHLY CONDUCTING INTERFACES 7 1.4 THE DYNAMICS OF DOMAIN MOVEMENT AND FERROIC SWITCHING 9 1.5 CONCLUSIONS 15 REFERENCES 16 2 PHASE DIAGRAMS OF CONVENTIONAL AND INVERSE FUNCTIONAL MAGNETIC HEUSLER ALLOYS: NEW THEORETICAL AND EXPERIMENTAL INVESTIGATIONS 19 P. ENTEL, M.E. GRUENER, A. HUCHT, A. DANNENBERG, M. SIEWERT, H.C. HERPER, T. KAKESHITA, T. FUKUDA, V.V. SOKOLOVSKIY, AND V.D. BUCHELNIKOV 2.1 INTRODUCTION AND COMPUTATIONAL 20 2.2 CRYSTAL STRUCTURES OF HALF- AND FULL-HEUSLER ALLOYS 21 2.3 PHASE DIAGRAMS OF NI 2 MN 1+I -Z 1 _AR(Z=GA, IN, SN,SB) HEUSLER ALLOYS 25 2.4 PHASE DIAGRAMS OF NI 2 + JR MNI_^Z(Z= GA, IN, SN, SB) HEUSLER ALLOYS 30 2.5 PHASE DIAGRAMS OF C O 2 N I 1 _ A - Z H - A - ( Z= GA.ZN) HEUSLER ALLOYS 33 2.6 CONCLUSIONS AND FUTURE ASPECTS OF MAGNETIC HEUSLER ALLOYS 41 REFERENCES 43 BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1010922351 DIGITALISIERT DURCH IMAGE 2 VIII CONTENTS 3 NI-MN-X HEUSLER MATERIALS 49 RYOSUKE KAINUMA AND RIE Y. UMETSU 3.1 INTRODUCTION 49 3.2 ATOMIC ORDERING AND MAGNETIC PROPERTIES IN ^MNCGA^ALI-^) ALLOYS 50 3.2.1 ATOMIC ORDERING 51 3.2.2 MAGNETIC PROPERTIES 52 3.3 MAGNETIC PROPERTIES IN OFF-STOICHIOMETRIC NI2MNI+ J ,INI_ J ALLOYS 55 3.4 MARTENSITIC TRANSFORMATION AND MAGNETIC PROPERTIES IN NIMNLN ALLOY 58 3.5 CONCLUDING REMARKS 62 REFERENCES 63 4 MAGNETIC INTERACTIONS GOVERNING THE INVERSE MAGNETOCALORIC EFFECT IN MARTENSITIC NI-MN-BASED SHAPE-MEMORY ALLOYS 67 S. AKSOY, M. ACET, T. KRENKE, E.F. WASSERMANN, M. GRUENER, P. ENTEL, L. MANOSA, A. PLANES, AND P.P. DEEN 4.1 INTRODUCTION 68 4.2 THE INVERSE MAGNETOCALORIC EFFECT AROUND A STRUCTURAL TRANSITIONS IN A FERROMAGNETIC SYSTEM 68 4.2.1 CONVENTIONAL AND INVERSE MAGNETOCALORIC EFFECTS IN NISOMN34LNI6 70 4.2.2 MAGNETIC COUPLING IN NI-MN-BASED MARTENSITIC HEUSLER ALLOYS 71 4.2.3 MAGNETIC EXCHANGE CONSTANTS IN NI-MN-BASED MARTENSITIC HEUSLER ALLOYS 74 4.3 CONCLUSION 75 REFERENCES 76 5 MAGNETIC FIELD-INDUCED STRAIN IN FERROMAGNETIC SHAPE MEMORY ALLOYS FE-31.2PD, FE 3 PT, AND NI 2 MNGA 79 TAKASHI FUKUDA AND TOMOYUKI KAKESHITA 5.1 INTRODUCTION 79 5.2 MARTENSITIC TRANSFORMATION IN FE-31.2PD, FE3PT, AND NI 2 MNGA 81 5.3 MAGNETIC FIELD-INDUCED STRAIN IN FE-31.2PD, FE 3 PT, ANDNI 2 MNGA 82 5.4 CONDITION FOR REARRANGEMENT OF MARTENSITE VARIANTS BY MAGNETIC FIELD 86 5.5 ORIGIN OF MARTENSITIC TRANSFORMATION IN FE 3 PT 90 5.6 SUMMARY 93 REFERENCES 93 IMAGE 3 CONTENTS IX 6 SOFT ELECTRONIC MATTER: INHOMOGENENEOUS PHASES IN STRONGLY CORRELATED CONDENSED MATTER 95 PETER B. LITTLEWOOD 6.1 INTRODUCTION 95 6.2 A MICROSCOPIC VIEW 96 6.3 EXAMPLE L:LA 2 NI0 4 99 6.4 EXAMPLE 2: COLOSSAL MAGNETORESISTANCE IN MANGANITES 100 6.4.1 THE BASICS: DOUBLE EXCHANGE AND JAHN-TELLER 100 6.4.2 COMPETING AND COOPERATING PHASES IN MANGANITES 103 6.4.3 GINZBURG-LANDAU THEORY FOR MANGANITES 105 6.5 EXAMPLE 3: SUPERCONDUCTIVITY AND MAGNETISM IN CECOIRIS 108 6.6 CONCLUDING REMARKS 110 REFERENCES 110 7 DEFECTS IN FERROELECTRICS 113 WENWU CAO 7.1 INTRODUCTION 113 7.2 VACANCIES IN PEROVSKITE FERROELECTRIC MATERIALS 115 7.3 DOPING OF ALIOVALENT DEFECTS 117 7.4 DEFECTS AND DIELECTRIC PROPERTIES 119 7.5 GRAIN BOUNDARY AND POSITIVE TEMPERATURE COEFFICIENT RESISTOR. 122 7.6 DOMAIN WALLS AS A TYPE OF MOBILE DEFECTS 125 7.7 SIZE EFFECTS AND SURFACE IN FERROELECTRIC MATERIALS 129 7.8 SUMMARY 131 REFERENCES 132 8 HIGH-RESOLUTION VISUALIZATION TECHNIQUES: STRUCTURAL ASPECTS 1 35 D. SCHRYVERS AND S. VAN AERT 8.1 EARLIER RESULTS ON TWEED PATTERNS IN NI-AL 136 8.2 MATRIX DEFORMATION AND DEPLETION FROM PRECIPITATION IN NI-TI. 137 8.3 MINIMAL STRAIN AT AUSTENITE - MARTENSITE INTERFACE 140 8.4 INTERNAL STRAIN CONTROL IN NI-TI MICRO-WIRES 142 8.5 STRAIN EFFECTS IN METALLIC NANO-BEAMS 142 8.6 FUTURE PROSPECTS 144 REFERENCES 1 48 9 HIGH-RESOLUTION VISUALIZING TECHNIQUES: MAGNETIC ASPECTS 151 YASUKAZU MURAKAMI 9.1 INTRODUCTION 151 9.2 MAGNETIC IMAGING BY TEM 152 9.2.1 LORENTZ MICROSCOPY 153 9.2.2 ELECTRON HOLOGRAPHY 154 9.2.3 INSTRUMENTATION FOR MAGNETIC DOMAIN OBSERVATIONS 156 9.3 STUDY OF MAGNETIC MICROSTRUCTURE IN COLOSSAL MAGNETORESISTIVE MANGANITE 157 9.3.1 FERROMAGNETIC DOMAIN NUCLEATION AND GROWTH 158 IMAGE 4 X CONTENTS 9.3.2 DETERMINATION OF MAGNETIC PARAMETERS OF A NANOSCALE REGION 162 9.4 MAGNETIC IMAGING OF FERROMAGNETIC SHAPE-MEMORY ALLOYS 164 9.4.1 IMPACT OF APBS ON THE LOCAL MAGNETIZATION DISTRIBUTION 165 9.4.2 MAGNETIC PATTERN FORMATION TRIGGERED BY PREMARTENSITIC LATTICE ANOMALY 169 9.5 CONCLUDING REMARKS 172 REFERENCES 173 10 UNDERSTANDING GLASSY PHENOMENA IN MATERIALS 177 DAVID SHERRINGTON 10.1 INTRODUCTION 177 10.2 SPIN GLASSES: A BRIEF REVIEW 178 10.3 MARTENSITES 181 10.4 RELAXORS 188 10.5 MODELS, SIMULATIONS AND ANALYSIS 193 10.6 CONCLUSION 195 REFERENCES 197 11 STRAIN GLASS AND STRAIN GLASS TRANSITION 201 XIAOBING REN 11.1 DISORDER-ORDER AND DISORDER-GLASS TRANSITION IN NATURE: ANTICIPATION OF A STRAIN GLASS TRANSITION AND STRAIN GLASS 201 11.2 PHASE DIAGRAM OF STRAIN GLASS: CROSSOVER FROM LRO TO GLASS DUE TO POINT DEFECTS 204 11.3 SIGNATURES OF STRAIN GLASS AND ANALOGY WITH OTHER GLASSES 207 11.4 NOVEL PROPERTIES OF STRAIN GLASS 211 11.5 ORIGIN OF STRAIN GLASS AND THEORETICAL MODELING/SIMULATIONS 214 11.6 STRAIN GLASS AS A SOLUTION TO SEVERAL LONG-STANDING PUZZLES ABOUT MARTENSITE 219 11.7 SUMMARY 223 REFERENCES 223 12 PRECURSOR NANOSCALE TEXTURES IN FERROELASTIC MARTENSITES 227 POL LLOVERAS, TERESA CASTAN, ANTONI PLANES, AND AVADH SAXENA 12.1 INTRODUCTION 227 12.2 STRUCTURAL PRECURSOR TEXTURES IN CUBIC FERROELASTICS 230 12.2.1 TWEED TEXTURES 230 12.2.2 EFFECT OF ELASTIC ANISOTROPY ON THE MORPHOLOGY OF STRUCTURAL PRECURSOR NANOSTRUCTURES 232 12.3 PHENOMENOLOGICAL MODELING 235 IMAGE 5 CONTENTS XI 12.4 NUMERICAL SIMULATION RESULTS 237 12.4.1 EFFECT OF THE ELASTIC ANISOTROPY ON STRUCTURAL PRECURSORS: FROM CROSS-HATCHED TO MOTTLED MORPHOLOGY 238 12.4.2 EFFECT OF THE DISORDER: FROZEN GLASS STATE 240 12.4.3 THERMOMECHANICAL BEHAVIOUR 242 12.5 CONCLUSIONS 243 REFERENCES 244 13 METASTABILITY, HYSTERESIS, AVALANCHES, AND ACOUSTIC EMISSION: MARTENSITIC TRANSITIONS IN FUNCTIONAL MATERIALS 249 MARTIN-LUC ROSINBERG AND EDUARD VIVES 13.1 INTRODUCTION 249 13.2 WHAT CAN WE LEARN FROM SIMPLE MODELS? 251 13.2.1 RELATIONSHIP BETWEEN HYSTERESIS AND THE DISTRIBUTION OF METASTABLE STATES 252 13.2.2 INFLUENCE OF THE DRIVING MECHANISM AND THE EFFECT OF LONG-RANGE FORCES 256 13.3 WHAT CAN WE LEARN FROM ACOUSTIC EMISSION DETECTION? 258 13.3.1 PULSE-COUNTING TECHNIQUE 259 13.3.1.1 TRANSITION TEMPERATURE 260 13.3.1.2 ATHERMAL AND ADIABATIC CHARACTER OF THE TRANSITION 260 13.3.1.3 LEARNING 261 13.3.1.4 DEPENDENCE ON THE DRIVING MECHANISM 262 13.3.1.5 CORRELATION WITH CALORIMETRY 263 13.3.2 STATISTICAL ANALYSIS OF SINGLE EVENTS 264 13.3.2.1 EXPONENT UNIVERSALITY CLASSES 265 13.3.2.2 LEARNING PROCESS 266 13.3.2.3 INFLUENCE OF THE DRIVING MECHANISM 268 13.3.3 FUTURE TRENDS FOR THE AE TECHNIQUE IN THE STUDY OF STRUCTURAL TRANSITIONS 269 13.4 CONCLUDING REMARKS 269 REFERENCES 270 14 ENTROPY-DRIVEN CONFORMATIONS CONTROLLING DNA FUNCTIONS 273 A.R. BISHOP, K.0. RASMUSSEN, A. USHEVA, AND BOIAN S. ALEXANDROV 14.1 INTRODUCTION 274 14.2 TRANSCRIPTION INITIATION, TRANSCRIPTIONAL START SITES, AND DNA BREATHING DYNAMICS 275 14.3 DNAREPAIR 283 14.4 BIOINFORMATICS AND DNA BREATHING DYNAMICS 286 14.5 CONCLUSIONS 288 REFERENCES 289 IMAGE 6 XII CONTENTS 15 CONCLUSION AND OUTLOOK 293 PER-ANKER LINDGARD 15.1 OUTLOOK 299 REFERENCES 300 INDEX 303
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spellingShingle Disorder and strain-induced complexity in functional materials
Springer series in materials science
Funktionswerkstoff (DE-588)4841224-7 gnd
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title Disorder and strain-induced complexity in functional materials
title_auth Disorder and strain-induced complexity in functional materials
title_exact_search Disorder and strain-induced complexity in functional materials
title_full Disorder and strain-induced complexity in functional materials T. Kakeshita ... ed.
title_fullStr Disorder and strain-induced complexity in functional materials T. Kakeshita ... ed.
title_full_unstemmed Disorder and strain-induced complexity in functional materials T. Kakeshita ... ed.
title_short Disorder and strain-induced complexity in functional materials
title_sort disorder and strain induced complexity in functional materials
topic Funktionswerkstoff (DE-588)4841224-7 gnd
Ferromagnetische Legierung (DE-588)4154130-3 gnd
Ungeordnetes System (DE-588)4124353-5 gnd
Memory-Legierung (DE-588)4120726-9 gnd
Ferroelektrikum (DE-588)4154121-2 gnd
Metallisches Glas (DE-588)4038893-1 gnd
topic_facet Funktionswerkstoff
Ferromagnetische Legierung
Ungeordnetes System
Memory-Legierung
Ferroelektrikum
Metallisches Glas
url http://deposit.dnb.de/cgi-bin/dokserv?id=3710622&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=024540335&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
volume_link (DE-604)BV000683335
work_keys_str_mv AT kakeshitatomoyuki disorderandstraininducedcomplexityinfunctionalmaterials