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INTERNATIONAL TABLES Physical properties of crystals
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International Tables for Crystallography
Volume D: Physical properties of crystals
Second online edition (2013)
ISBN: 978-1-118-76229-5
doi: 10.1107/97809553602060000113
Edited by A. Authier
Contents
Preface to the second edition
(p. xii)
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André Authier
Tensorial aspects of physical properties
1.1. Introduction to the properties of tensors
(pp. 3-34)
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chapter contents
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A. Authier
1.1.1. The matrix of physical properties (pp. 3-5)
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1.1.2. Basic properties of vector spaces (pp. 5-7)
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1.1.3. Mathematical notion of tensor (pp. 7-10)
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1.1.4. Symmetry properties (pp. 10-31)
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1.1.5. Thermodynamic functions and physical property tensors (pp. 31-32)
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1.1.6. Glossary (pp. 32-33)
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References
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1.2. Representations of crystallographic groups
(pp. 34-71)
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chapter contents
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T. Janssen
1.2.1. Introduction (pp. 34-35)
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1.2.2. Point groups (pp. 35-46)
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1.2.3. Space groups (pp. 46-51)
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1.2.4. Tensors (pp. 51-53)
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1.2.5. Magnetic symmetry (pp. 53-56)
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1.2.6. Tables (pp. 56-62)
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1.2.7. Introduction to the accompanying software
Tenχar
(pp. 62-70)
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M. Ephraïm
,
T. Janssen
,
A. Janner
and
A. Thiers
1.2.8. Glossary (pp. 70-71)
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References
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1.3. Elastic properties
(pp. 72-100)
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chapter contents
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A. Authier
and
A. Zarembowitch
1.3.1. Strain tensor (pp. 72-76)
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1.3.2. Stress tensor (pp. 76-80)
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1.3.3. Linear elasticity (pp. 80-85)
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1.3.4. Propagation of elastic waves in continuous media – dynamic elasticity (pp. 86-89)
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1.3.5. Pressure dependence and temperature dependence of the elastic constants (pp. 89-91)
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1.3.6. Nonlinear elasticity (pp. 92-95)
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1.3.7. Nonlinear dynamic elasticity (pp. 95-98)
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1.3.8. Glossary (p. 98)
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References
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1.4. Thermal expansion
(pp. 100-105)
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chapter contents
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H. Küppers
1.4.1. Definition, symmetry and representation surfaces (pp. 100-101)
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1.4.2. Grüneisen relation (pp. 101-102)
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1.4.3. Experimental methods (pp. 102-104)
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1.4.4. Relation to crystal structure (pp. 104-105)
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1.4.5. Glossary (p. 105)
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References
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1.5. Magnetic properties
(pp. 106-153)
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chapter contents
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A. S. Borovik-Romanov
,
H. Grimmer
and
M. Kenzelmann
1.5.1. Introduction (pp. 106-110)
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1.5.2. Magnetic symmetry (pp. 110-117)
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1.5.3. Phase transitions into a magnetically ordered state (pp. 117-126)
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1.5.4. Domain structure (pp. 126-128)
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1.5.5. Weakly non-collinear magnetic structures (pp. 128-132)
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1.5.6. Reorientation transitions (pp. 132-133)
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1.5.7. Piezomagnetism (pp. 133-139)
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1.5.8. Magnetoelectric effect (pp. 139-145)
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1.5.9. Magnetostriction (pp. 145-148)
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1.5.10. Connection between Gaussian and SI units (p. 148)
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1.5.11. Glossary (p. 149)
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References
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1.6. Classical linear crystal optics
(pp. 153-180)
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chapter contents
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A. M. Glazer
and
K. G. Cox
1.6.1. Introduction (p. 153)
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1.6.2. Generalized optical, electro-optic and magneto-optic effects (pp. 153-155)
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1.6.3. Linear optics (pp. 155-157)
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1.6.4. Practical observation of crystals (pp. 157-169)
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1.6.5. Optical rotation (pp. 169-175)
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1.6.6. Linear electro-optic effect (pp. 175-176)
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1.6.7. The linear photoelastic effect (pp. 176-179)
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1.6.8. Glossary (p. 179)
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References
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1.7. Nonlinear optical properties
(pp. 181-222)
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chapter contents
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B. Boulanger
and
J. Zyss
1.7.1. Introduction (p. 181)
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1.7.2. Origin and symmetry of optical nonlinearities (pp. 181-186)
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1.7.3. Propagation phenomena (pp. 186-215)
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1.7.4. Determination of basic nonlinear parameters (pp. 215-217)
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1.7.5. The main nonlinear crystals (pp. 217-219)
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1.7.6. Glossary (p. 219)
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References
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1.8. Transport properties
(pp. 223-230)
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chapter contents
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G. D. Mahan
1.8.1. Introduction (p. 223)
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1.8.2. Macroscopic equations (p. 223)
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1.8.3. Electrical resistivity (pp. 223-227)
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1.8.4. Thermal conductivity (pp. 227-229)
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1.8.5. Seebeck coefficient (pp. 229-230)
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1.8.6. Glossary (p. 230)
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References
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1.9. Atomic displacement parameters
(pp. 231-245)
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chapter contents
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W. F. Kuhs
1.9.1. Introduction (p. 231)
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1.9.2. The atomic displacement parameters (ADPs) (pp. 231-235)
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1.9.3. Site-symmetry restrictions (p. 235)
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1.9.4. Graphical representation (pp. 235-245)
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1.9.5. Glossary (p. 245)
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References
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1.10. Tensors in quasiperiodic structures
(pp. 246-270)
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chapter contents
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T. Janssen
1.10.1. Quasiperiodic structures (pp. 246-248)
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1.10.2. Symmetry (pp. 248-252)
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1.10.3. Action of the symmetry group (pp. 252-253)
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1.10.4. Tensors (pp. 253-262)
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1.10.5. Tables (pp. 262-268)
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References
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1.11. Tensorial properties of local crystal susceptibilities
(pp. 269-283)
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chapter contents
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V. E. Dmitrienko
,
A. Kirfel
and
E. N. Ovchinnikova
1.11.1. Introduction (pp. 269-270)
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1.11.2. Symmetry restrictions on local tensorial susceptibility and forbidden reflections (pp. 270-272)
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1.11.3. Polarization properties and azimuthal dependence (pp. 272-274)
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1.11.4. Physical mechanisms for the anisotropy of atomic X-ray susceptibility (p. 274)
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1.11.5. Non-resonant magnetic scattering (p. 275)
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1.11.6. Resonant atomic factors: multipole expansion (pp. 275-280)
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1.11.7. Glossary (p. 281)
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References
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Symmetry aspects of excitations
2.1. Phonons
(pp. 286-313)
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chapter contents
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G. Eckold
2.1.1. Introduction (p. 286)
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2.1.2. Fundamentals of lattice dynamics in the harmonic approximation (pp. 286-294)
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2.1.3. Symmetry of lattice vibrations (pp. 294-311)
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2.1.4. Conclusion (p. 311)
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2.1.5. Glossary (pp. 311-312)
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References
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2.2. Electrons
(pp. 314-333)
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chapter contents
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K. Schwarz
2.2.1. Introduction (p. 314)
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2.2.2. The lattice (p. 314)
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2.2.3. Symmetry operators (pp. 314-315)
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2.2.4. The Bloch theorem (pp. 315-316)
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2.2.5. The free-electron (Sommerfeld) model (p. 317)
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2.2.6. Space-group symmetry (pp. 317-318)
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2.2.7. The
vector and the Brillouin zone (p. 318)
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2.2.8. Bloch functions (p. 319)
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2.2.9. Quantum-mechanical treatment (pp. 319-320)
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2.2.10. Density functional theory (pp. 320-321)
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2.2.11. Band-theory methods (pp. 321-323)
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2.2.12. The linearized augmented plane wave method (pp. 323-324)
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2.2.13. The local coordinate system (pp. 324-325)
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2.2.14. Characterization of Bloch states (pp. 325-327)
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2.2.15. Electric field gradient tensor (pp. 327-330)
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2.2.16. Examples (pp. 330-332)
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2.2.17. Conclusion (p. 332)
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References
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2.3. Raman scattering
(pp. 334-348)
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chapter contents
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I. Gregora
2.3.1. Introduction (p. 334)
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2.3.2. Inelastic light scattering in crystals – basic notions (pp. 334-335)
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2.3.3. First-order scattering by phonons (pp. 335-342)
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2.3.4. Morphic effects in Raman scattering (pp. 342-345)
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2.3.5. Spatial-dispersion effects (pp. 345-346)
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2.3.6. Higher-order scattering (pp. 346-347)
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2.3.7. Conclusions (pp. 347-348)
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2.3.8. Glossary (p. 348)
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References
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2.4. Brillouin scattering
(pp. 349-355)
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chapter contents
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R. Vacher
and
E. Courtens
2.4.1. Introduction (p. 349)
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2.4.2. Elastic waves (pp. 349-350)
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2.4.3. Coupling of light with elastic waves (p. 350)
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2.4.4. Brillouin scattering in crystals (pp. 350-351)
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2.4.5. Use of the tables (p. 351)
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2.4.6. Techniques of Brillouin spectroscopy (pp. 351-355)
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References
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Symmetry aspects of phase transitions, twinning and domain structures
3.1. Structural phase transitions
(pp. 358-396)
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chapter contents
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J.-C. Tolédano
,
V. Janovec
,
V. Kopský
,
J. F. Scott
and
P. Boček
3.1.1. Introduction (pp. 358-360)
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J.-C. Tolédano
3.1.2. Thermodynamics of structural transitions (pp. 360-369)
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J.-C. Tolédano
3.1.3. Equitranslational phase transitions. Property tensors at ferroic phase transitions (pp. 370-381)
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V. Janovec
and
V. Kopský
3.1.4. Example of a table for non-equitranslational phase transitions (p. 381)
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J.-C. Tolédano
3.1.5. Microscopic aspects of structural phase transitions and soft modes (pp. 381-392)
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J. F. Scott
3.1.6. Group informatics and tensor calculus (pp. 392-394)
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V. Kopský
and
P. Boček
3.1.7. Glossary (p. 394)
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References
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3.2. Twinning and domain structures
(pp. 397-412)
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chapter contents
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V. Janovec
,
Th. Hahn
and
H. Klapper
3.2.1. Introduction and history (pp. 397-398)
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3.2.2. A brief survey of bicrystallography (pp. 398-399)
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3.2.3. Mathematical tools (pp. 399-410)
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References
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3.3. Twinning of crystals
(pp. 413-487)
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chapter contents
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Th. Hahn
and
H. Klapper
3.3.1. Crystal aggregates and intergrowths (pp. 413-414)
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3.3.2. Basic concepts and definitions of twinning (pp. 414-418)
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3.3.3. Morphological classification, simple and multiple twinning (pp. 418-419)
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3.3.4. Composite symmetry and the twin law (pp. 419-423)
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3.3.5. Description of the twin law by black–white symmetry (p. 423)
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3.3.6. Examples of twinned crystals (pp. 423-436)
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3.3.7. Genetic classification of twins (pp. 436-440)
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3.3.8. Lattice aspects of twinning (pp. 440-446)
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3.3.9. Twinning by merohedry and pseudo-merohedry (pp. 446-450)
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3.3.10. Twin boundaries (pp. 450-469)
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3.3.11. Effect of twinning in reciprocal space (pp. 469-477)
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3.3.12. Domain structures (by V. Janovec) (p. 477)
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3.3.13. Glossary (pp. 477-478)
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References
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3.4. Domain structures
(pp. 484-559)
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chapter contents
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V. Janovec
and
J. Přívratská
3.4.1. Introduction (pp. 484-486)
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3.4.2. Domain states (pp. 486-505)
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3.4.3. Domain pairs: domain twin laws, distinction of domain states and switching (pp. 505-528)
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3.4.4. Domain twins and domain walls (pp. 528-539)
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3.4.5. Glossary (p. 539)
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References
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List of terms and symbols used in this volume
(pp. 545-547)
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A. Authier
Resources
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