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磁性量子理论 材料的磁学性质 第3版 英文 影印本PDF|Epub|txt|kindle电子书版本网盘下载

磁性量子理论 材料的磁学性质 第3版 英文 影印本
  • R. M. White著 著
  • 出版社: 北京:科学出版社
  • ISBN:7030209389
  • 出版时间:2008
  • 标注页数:359页
  • 文件大小:49MB
  • 文件页数:371页
  • 主题词:磁学-英文

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图书目录

1 The Magnetic Susceptibility1

1.1 The Magnetic Moment2

1.2 The Magnetization7

1.3 The Generalized Susceptibility12

1.3.1 The Kramers-Kronig Relations14

1.3.2 The Fluctuation-Dissipation Theorem15

1.3.3 Onsager Relation20

1.4 Second Quantization21

1.4.1 Example:The Degenerate-Electron Gas26

1.4.2 Example:The Zeeman Interaction29

2 The Magnetic Hamiltonian33

2.1 The Dirac Equation33

2.2 Sources of Fields35

2.2.1 Uniform External Field35

2.2.2 The Electric Quadrupole Field36

2.2.3 The Magnetic Dipole(Hyperfine)Field41

2.2.4 Other Electrons on the Same Ion43

2.2.5 Crystalline Electric Fields44

2.2.6 Dipole-Dipole Interaction50

2.2.7 Direct Exchange51

2.2.8 Superexchange58

2.2.9 Molecular Magnets62

2.2.10 Double Exchange65

2.2.11 Exchange on a Surface66

2.3 The Spin Hamiltonian67

2.3.1 Transition-Metal Ions67

2.3.2 Rare-Earth Ions75

2.3.3 Semiconductors77

3 The Static Susceptibility of Noninteracting Systems85

3.1 Localized Moments85

3.1.1 Diamagnetism88

3.1.2 Paramagnetism of Transition-Metal Ions89

3.1.3 Paramagnetism of Rare-Earth Ions91

3.2 Metals94

3.2.1 Landau Diamagnetism94

3.2.2 The de Haas-van Alphen Effect98

3.2.3 Quantized Hall Conductance102

3.2.4 Pauli Paramagnetism106

3.3 Measurement of the Susceptibility112

3.4 Local Moments in Metals115

3.4.1 Virtual Bound States116

3.4.2 Anderson's Theory of Moment Formation119

3.4.3 The Kondo Effect124

4 The Static Susceptibility of Interacting Systems:Local Moments133

4.1 High Temperatures135

4.2 Low Temperatures146

4.3 Temperatures Near Tc149

4.4 Landau Theory of Second-Order Transitions153

4.5 Critical Phenomena154

4.5.1 Order in 2D155

4.6 Stoner-Wohlfarth Model159

4.7 Dynamic Coercivity162

4.8 Magnetic Viscosity165

5 The Static Susceptibility of Interacting Systems:Metals169

5.1 Fermi Liquid Theory169

5.2 Heavy Fermion Systems176

5.3 Itinerant Magnetism177

5.3.1 The Stoner Model177

5.3.2 The Hubbard Model187

6 The Dynamic Susceptibility of Weakly Interacting Systems:Local Moments193

6.1 Equation of Motion193

6.2 The Bloch Equations197

6.3 Resonance Line Shape202

6.3.1 The Method of Moments202

6.3.2 The Relaxation-Function Method206

6.3.3 Spin Diffusion210

6.4 Spin Echoes211

6.4.1 Measurement of T1211

6.4.2 Calculation of T1213

7 The Dynamic Susceptibility of Weakly Interacting Systems:Metals219

7.1 Paramagnons221

7.2 Fermi Liquid Theory223

7.3 Conduction-Electron Spin Resonance228

7.4 Spin Waves230

7.5 Local Moments in Metals231

7.6 Faraday Effect235

8 The Dynamic Susceptibility of Strongly Interacting Systems237

8.1 Broken Symmetry237

8.2 Insulators238

8.2.1 Spin-Wave Theory240

8.2.2 Coherent Magnon State248

8.2.3 Magnetostatic Modes249

8.2.4 Solitons250

8.2.5 Thermal Magnon Effects253

8.2.6 Nonlinear Processes255

8.2.7 Chaos259

8.2.8 Optical Processes262

8.3 High Temperatures266

8.4 Micromagnetics269

8.4.1 Magnetic Force Microscope270

8.4.2 Phenomenological Damping273

8.5 Metals274

9 Thin Film Systems281

9.1 Interfaces281

9.1.1 Exchange Bias281

9.1.2 Biquadratic Exchange284

9.2 Trilayers285

9.2.1 The RKKY Ineraction286

9.2.2 Quantum Well Model289

9.2.3 Giant Magnetoresistance(GMR)292

9.2.4 Tunneling300

9.2.5 Spin Transfer306

9.2.6 Spin Hall Effect310

10 Neutron Scattering315

10.1 Neutron Scattering Cross Section315

10.2 Nuclear Scattering317

10.2.1 Bragg Scattering318

10.2.2 Scattering of Phonons320

10.3 Magnetic Scattering324

10.3.1 Bragg Scattering328

10.3.2 Spin Dynamics333

10.4 Example:Manganese Oxides337

10.5 Example:Quantum Phase Transitions341

References345

Index355

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