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1.

図書

図書
edited by U. Shmueli
出版情報: Chichester, West Sussex : Published for the International Union of Crystallography by Wiley, 2015  xiv, 686 p. ; 31 cm
シリーズ名: International tables for crystallography ; v. B
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2.

図書

図書
edited by Theo Hahn
出版情報: Dordrecht ; Tokyo : Published for the International Union of Crystallography by D. Reidel, 1987  xvi, 878 p. ; 31 cm
シリーズ名: International tables for crystallography ; v. A
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3.

図書

図書
by J.M. MacLaren ... [et al.]
出版情報: Dordrecht ; Tokyo : D. Reidel , Norwell, MA, USA : Sold and distributed in the U.S.A. and Canada by Kluwer Academic Publishers, c1987  viii, 352 p. ; 25 cm
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4.

図書

図書
edited by A.J.C. Wilson and E. Prince
出版情報: Dordrecht ; Boston : Published for the International Union of Crystallography by Kluwer Academic Publishers, 1999  xxxi, 992 p. ; 31 cm
シリーズ名: International tables for crystallography ; v. C
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5.

図書

図書
edited by Theo Hahn
出版情報: Dordrecht ; Boston : Published for the International Union of Crystallography by Kluwer Academic publishers, 1995  xvi, 878 p. ; 31 cm
シリーズ名: International tables for crystallography ; v. A
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6.

図書

図書
edited by U. Shmueli
出版情報: Dordrecht : Published for the International Union of Crystallography by Kluwer Academic Publishers, 1996  xxiii, 506 p. ; 31 cm
シリーズ名: International tables for crystallography ; v. B
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7.

図書

図書
edited by A.J.C. Wilson
出版情報: Dordrecht ; Boston : Published for the International Union of Crystallography by Kluwer Academic Publishers, 1992  xxix, 883 p. ; 31 cm
シリーズ名: International tables for crystallography ; v. C
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8.

図書

図書
P. Ehrhart ... [et al.] ; herausgeber, H. Ullmaier
出版情報: Berlin ; Tokyo : Springer-Verlag, c1991  xiii, 437 p. ; 28 cm
シリーズ名: Landolt-Börnstein Zahlenwerte und Funktionen aus Naturwissenschaften und Technik, Neue Serie / Gesamtherausgabe, K.-H. Hellwege ; Gruppe 3 . Kristall- und Festkörperphysik ; Bd. 25
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Introductory material
Production of atomic defects in metals / P. Jung1:
Introduction / 1.1:
General remarks / 1.1.1:
Definitions / 1.1.2:
Symbols and units / 1.1.3:
Abbreviations / 1.1.4:
Methods to produce atomic defects in metals
Stability of atomic defects in metals / 1.2:
Methods to determine concentrations of atomic defects in metals / 1.3:
Production of atomic defects in metals in thermal equilibrium / 1.4:
Production of atomic defects in metals by plastic deformation / 1.5:
Production of atomic defects in metals by irradiation / 1.6:
Production of atomic defects in pure, polycrystalline metals / 1.7.1:
Electron irradiation / 1.7.1.1:
Ion irradiation / 1.7.1.2:
Ion implantation / 1.7.1.3:
Thermal neutron irradiation / 1.7.1.4:
Fission neutron, fast neutron, and fission fragment irradiation / 1.7.1.5:
Production of atomic defects in pure, single crystalline metals / 1.7.2:
Displacement energy maps / 1.7.2.1:
Average displacement energy / 1.7.2.2:
Production of atomic defects in predamaged metals / 1.7.3:
Quenched metals / 1.7.3.1:
Deformed metals / 1.7.3.2:
Preirradiated metals / 1.7.3.3:
Production of atomic defects in metals at high defect densities / 1.7.4:
Subthreshold effects / 1.7.4.1:
Defect saturation / 1.7.4.2:
Cascade production / 1.7.4.3:
Production of atomic defects in alloys / 1.7.5:
Dilute alloys / 1.7.5.1:
Concentrated alloys / 1.7.5.2:
Ordered alloys / 1.7.5.3:
Production of atomic defects in metallic glasses
Surface effects
Threshold energy for sputtering / 1.7.7.1:
Energy dependence of the sputtering yield / 1.7.7.2:
Dependence of the sputtering yield on crystal orientation / 1.7.7.3:
Temperature dependence of the sputtering yield / 1.7.7.4:
Temperature effects on the production of atomic defects in metals / 1.7.8:
Computer simulation of atomic defeat production / 1.7.9:
Computer simulation of low energy events / 1.7.9.1:
Computer simulation of high energy cascades / 1.7.9.2:
Computer simulation of temperature effects on atomic defect production / 1.7.9.3:
Figures for 1
References for 1
Properties and interactions of atomic defects in metals and alloys / 2:
Frequently used symbols and abbreviations / P. Ehrhart2.1:
Characterization of interstitial atoms and vacancies / 2.1.3:
Formation entropies and energies and equilibrium concentrations / 2.1.3.1:
Structure of defects and their agglomerates / 2.1.3.2:
Defect dynamics, migration energies and jump frequencies / 2.1.3.3:
Defect-solute interaction / 2.1.3.4:
Defect reactions and annealing stages / 2.1.3.5:
Experimental methods / 2.1.4:
Residual electrical resistivity (Ap) / 2.1.4.1:
Calorimetry (Cal) / 2.1.4.2:
Differential dilatometry (DD) / 2.1.4.3:
Diffuse scattering of X-rays or neutrons, Huang scattering (DXS) / 2.1.4.4:
Extended X-ray absorption fine structure (EXAFS) / 2.1.4.5:
Inelastic neutron scattering (INS) / 2.1.4.6:
Mechanical relaxation (elastic after-effect, internal friction, ultrasonic attenuation) (MechR) / 2.1.4.7:
Magnetic relaxation (MagR) / 2.1.4.8:
Mössbauer spectroscopy (MS) / 2.1.4.9:
Perturbed angular correlation (PAC) / 2.1.4.11:
Positron annihilation spectroscopy (PAS) / 2.1.4.12:
Muon spin rotation experiments (?SR) / 2.1.4.13:
Nuclear magnetic resonance (NMR) / 2.1.4.14:
Ion channeling (Chann) / 2.1.4.15:
Transmission electron microscopy (TEM) / 2.1.4.16:
Field ion microscopy (FIM) / 2.1.4.17:
Thermal helium desorption spectroscopy (THDS) / 2.1.4.18:
Figures for 2.1
bcc metals / H. Schultz2.2:
Special remarks / 2.2.1:
Concepts of data evaluation / 2.2.2:
Data / 2.2.3:
Cr
Fe
K
Li
Mo
Na
Nb
Ta
V
W
References for 2.2
fcc metals / 2.3:
Ag / 2.3.1:
Al
Au
Ce
Cu
Ir
Ni
Pb
Pd
Pt
Rh
Th
hcp metals / 2.4:
Be / 2.4.1:
Cd
Co
Mg
Re
Sc
Tl
Ti
Y
Zn
Zr
RE
Metals with other structures / 2.5:
Bi / 2.5.1:
Ga
Hg
In
Sb
Sn
U
Ag-Al / 2.6:
Ag-Au
Ag-Zn
Al-Cu
Al-Fe
Al-Ni
Au-Cu
Co-Fe
Co-Pt
Cr-Fe
Cr-Ni
Cu-Mn
Cu-Ni
Cu-Zn
Fe-Ni
Mn-Ni
Mo-Ni
Superconducting alloys
References for 2.1 and 2.3 - 2.6
Helium in metals / H. Ullmaier3:
Symbols and abbreviations / 3.1:
Experimental and theoretical methods / 3.1.3:
Production processes and rates / 3.2:
(n,?)-reactions / 3.2.1:
Other nuclear reactions / 3.2.2:
Implantation / 3.2.3:
Concurrent displacement damage / 3.2.4:
Tritium decay / 3.2.5:
Atomistic properties / 3.3:
Interstitial and substitutional solubility / 3.3.1:
Binding to defects / 3.3.2:
Diffusion / 3.3.3:
Clusters and bubbles / 3.4:
Formation without vacancy clustering / 3.4.1:
Nucleation involving vacancy migration / 3.4.2:
Growth and coarsening / 3.4.3:
Figures for 3
References for 3
Subject index for 3
Introductory material
Production of atomic defects in metals / P. Jung1:
Introduction / 1.1:
9.

図書

図書
Z.A. Kazei ... [et al.] ; Herausgeber, H.P.J. Wijn
出版情報: Berlin ; Tokyo : Springer-Verlag, c1991  ix, 263 p. ; 28 cm
シリーズ名: Landolt-Börnstein Zahlenwerte und Funktionen aus Naturwissenschaften und Technik, Neue Serie / Gesamtherausgabe, K.-H. Hellwege ; Gruppe 3 . Kristall- und Festkörperphysik ; Bd. 27 . Magnetische Eigenschaften nicht-metallischer anorganischer Verbindungen von Übergangselementen ; Teilbd. e
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Introductory material
Magnetic properties of garnets / 4:
Iron garnets / P. Novak4.1:
Introduction / 4.1.1:
General remarks / 4.1.1.1:
List of frequently used symbols and abbreviations / 4.1.1.2:
Magnetic properties / 4.1.2:
Magnetic moments and molecular field data / 4.1.2.1:
Saturation magnetization and Curie temperature / 4.1.2.1.1:
Molecular-field- and exchange constants / 4.1.2.1.2:
Magnetic moments of the rare earth ions / 4.1.2.1.3:
Magnetic phase transitions / 4.1.2.2:
Spontaneous spin-reorientational transitions / 4.1.2.2.1:
Field induced transitions / 4.1.2.2.2:
Magnetocrystalline anisotropy / 4.1.2.3:
Cubic anisotropy / 4.1.2.3.1:
Non-cubic anisotropy / 4.1.2.3.2:
Ferromagnetic resonance (FMR) / 4.1.2.4:
Resonance field / 4.1.2.4.1:
FMR line width / 4.1.2.4.2:
g-factor / 4.1.2.4.3:
Spin waves, magnetostatic modes and relaxation / 4.1.2.5:
Spin waves and magnetostatic modes / 4.1.2.5.1:
Non-linear effects and relaxation / 4.1.2.5.2:
Nuclear magnetic resonance (NMR) / 4.1.2.6:
Mossbauer spectroscopy / 4.1.2.7:
Magnetic domains (stripe and bubble domains) / 4.1.2.8:
Static properties / 4.1.2.8.1:
Dynamic properties / 4.1.2.8.2:
Magnetoelastic properties / 4.1.3:
Magnetostriction / 4.1.3.1:
Magnetoelastic waves / 4.1.3.2:
Elastic properties / 4.1.4:
Optical and magnetooptical properties / 4.1.5:
Optical properties / 4.1.5.1:
Absorption of light / 4.1.5.1.1:
Reflection of light / 4.1.5.1.2:
Refractive index / 4.1.5.1.3:
Magnetooptical properties / 4.1.5.2:
Faraday rotation / 4.1.5.2.1:
Magnetic circular dichroism (MCD) / 4.1.5.2.2:
Kerr effects / 4.1.5.2.3:
Magnetic linear birefringence (MLB) and nonmagnetic linear birefringence / 4.1.5.2.4:
Magnetic linear dichroism (MLD) / 4.1.5.2.5:
Photoinduced effects / 4.1.5.3:
Thermal properties / 4.1.6:
Electrical properties / 4.1.7:
Electrical conductivity / 4.1.7.1:
Magnetoresistance and magnetoelectric effect / 4.1.7.2:
Crystal structure / 4.1.8:
References for 4.1 / 4.1.9:
List of iron garnets in Vols.4A, 4B, 12A and 27E / 4.1.10:
Non-iron garnets / Z.A. Kazei ; N.P. Kolmakova ; V.I. Sokolov4.2:
List of frequently used symbols and abbreviation / 4.2.1:
Magnetic susceptibility / 4.2.2:
Rare earth garnets / 4.2.2.1:
3d-ion garnets / 4.2.2.2:
Magnetization and magnetic structure / 4.2.3:
Magnetic moments and magnetic anisotropies of terbium, dysprosium and holmium aluminum garnets / 4.2.3.1:
Magnetic moments of rare earth gallium garnets / 4.2.3.2:
Magnetic neutron scattering in dysprosium aluminum garnets / 4.2.3.3:
Magnetic neutron scattering in terbium, holmium and dysprosium gallium garnets / 4.2.3.4:
Magnetization and magnetic phase transitions in manganese germanium garnets / 4.2.3.5:
Garnets with several 3d-ions / 4.2.3.6:
Results of magnetic resonance experiments / 4.2.4:
Electron paramagnetic resonance of paramagnetic metal ions in diamagnetic garnets / 4.2.4.1:
Electron paramagnetic resonance of rare earth ions in diamagnetic garnets / 4.2.4.2:
Electron paramagnetic resonance of impurities in paramagnetic garnets / 4.2.4.3:
Nuclear magnetic resonance / 4.2.4.4:
Antiferromagnetic resonance / 4.2.4.5:
Crystal-field parameters / 4.2.5:
Optical spectra and index of refraction / 4.2.5.2:
Information on colour centres / 4.2.5.3:
Further references for results from optical measurements / 4.2.5.4:
Electron spin-lattice relaxation of paramagnetic ions in garnets / 4.2.5.5:
Heat capacity / 4.2.8:
Derived thermodynamic functions / 4.2.8.2:
Debye temperature / 4.2.8.3:
Thermal expansion / 4.2.8.4:
Kapitza conductance / 4.2.8.5:
Thermal conductivity / 4.2.8.6:
Ultrasound attenuation / 4.2.8.7:
Elastic and photoelastic properties / 4.2.9:
Elastic and photoelastic constants at room temperature / 4.2.9.1:
Temperature dependences / 4.2.9.2:
Magnetostriction of rare earth garnets / 4.2.10:
Magnetostriction of antiferromagnetic garnets with 3d-ions / 4.2.10.2:
Electrical conductivity and thermoelectric power / 4.2.11:
Photoconductivity / 4.2.11.2:
References for 4.2 / 4.2.12:
List of non-iron garnets in Vols.4B, 12A and 27E / 4.2.13:
Introductory material
Magnetic properties of garnets / 4:
Iron garnets / P. Novak4.1:
10.

図書

図書
E. Agostinelli ... [et al.] ; herausgeber, H.P.J. Wijn
出版情報: Berlin ; Tokyo : Springer-Verlag, c1991  ix, 501 p. ; 28 cm
シリーズ名: Landolt-Börnstein Zahlenwerte und Funktionen aus Naturwissenschaften und Technik, Neue Serie / Gesamtherausgabe, K.-H. Hellwege ; Gruppe 3 . Kristall- und Festkörperphysik ; Bd. 27 . Magnetische Eigenschaften nicht-metallischer anorganischer Verbindungen von Übergangselementen ; Teilbd. d
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Introductory material
Magnetic properties of oxy-spinels / 3:
Binary oxy-spinels (Co3O4, Fe3O4, gamma-Fe2O3, Mn3O4) / V.A.M. Brabers ; T.E. Whall3.1:
List of symbols and abbreviations / 3.1.1:
Cobalt oxide, Co3O4 / 3.1.2:
References for 3.1.2
Magnetite, Fe3O4 / 3.1.3:
References for 3.1.3
Maghemite, gamma-Fe2O3 / 3.1.4:
References for 3.1.4
Hausmannite, Mn3O4 / 3.1.5:
References for 3.1.5
Iron oxy-spinels / 3.2:
Introduction / 3.2.1:
Fe-oxide spinels containing Al, Ca or Cd / 3.2.2:
References for 3.2.2
Fe-oxide spinels containing Co / 3.2.3:
References for 3.2.3
Fe-oxide spinels containing Cr / 3.2.4:
References for 3.2.4
Fe-oxide spinels containing Cu / 3.2.5:
References for 3.2.5
Fe-oxide spinels containing Ga, Ge, In, Li or Mg / 3.2.6:
References for 3.2.6
Fe-oxide spinels containing Mn, Mo / 3.2.7:
References for 3.2.7
Fe-oxide spinels containing Ni / 3.2.8:
References for 3.2.8
Fe-oxide spinels containing Sb, Sn, Ti, V or Zn / 3.2.9:
References for 3.2.9
Non-iron oxy-spinels / E. Agostinelli ; D. Fiorani ; A.M. Testa3.3:
General properties of oxide spinels / 3.3.1:
References for 3.3.2
Al-oxide spinels and Al-oxide spinels with substitutions / 3.3.3:
References for 3.3.3
Co-oxide spinels and Co-oxide spinels with substitutions / 3.3.4:
References for 3.3.4
Cr-oxide spinels and Cr-oxide spinels with substitutions / 3.3.5:
References for 3.3.5
Ga-oxide spinels and Ga-oxide spinels with substitutions / 3.3.6:
References for 3.3.6
Ge-oxide spinels and Ge-oxide spinels with substitutions / 3.3.7:
References for 3.3.7
In-oxide spinels and In-oxide spinels with substitutions / 3.3.8:
References for 3.3.8
Mn-oxide spinels and Mn-oxide spinels with substitutions / 3.3.9:
References for 3.3.9
Rh-oxide spinels and Rh-oxide spinels with substitutions / 3.3.10:
References for 3.3.10
Sb-oxide spinels and Sb-oxide spinels with substitutions / 3.3.11:
References for 3.3.11
Sn-oxide spinels and Sn-oxide spinels with substitutions / 3.3.12:
References for 3.3.12
Te-oxide spinels and Te-oxide spinels with substitutions / 3.3.13:
Reference for 3.3.13
Ti-oxide spinels and Ti-oxide spinels with substitutions / 3.3.14:
References for 3.3.14
V-oxide spinels and V-oxide spinels with substitutions / 3.3.15:
References for 3.3.15
Introductory material
Magnetic properties of oxy-spinels / 3:
Binary oxy-spinels (Co3O4, Fe3O4, gamma-Fe2O3, Mn3O4) / V.A.M. Brabers ; T.E. Whall3.1:
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