International Tables for Crystallography (2006). Vol. D. ch. 1.6, pp. 150-177
https://doi.org/10.1107/97809553602060000633

Chapter 1.6. Classical linear crystal optics

Chapter index

absorption colours 1.6.4.15
acousto-optic effect 1.6.7.3, 1.6.7.3
linear 1.6.2.13
acousto-optic materials 1.6.7.3, 1.6.7.3
figure of merit 1.6.7.3
analyser plane 1.6.4.4
antisymmetric tensors 1.6.5.4, 1.6.5.4, 1.6.5.4, 1.6.5.4, 1.6.5.4, 1.6.5.4
rank 3 1.6.5.3
rank 3 (unit) 1.6.5.4
aragonite (CaCO3) 1.6.3.2
axial tensors 1.6.5.4, 1.6.5.4, 1.6.5.4, 1.6.5.4
axial vectors 1.6.5.4, 1.6.5.4, 1.6.5.4, 1.6.5.4
Babinet compensator 1.6.4.10
back focal plane 1.6.4.11, 1.6.4.11, 1.6.4.11
Berek compensator 1.6.4.10
Bertrand lens 1.6.4.1, 1.6.4.11
biaxial classes 1.6.4.11, 1.6.4.14
biaxial indicatrix 1.6.3.2, 1.6.6.2, 1.6.7.3
Biot–Fresnel construction 1.6.4.13, 1.6.4.13, 1.6.4.13
chirality 1.6.5.1, 1.6.5.1
circular birefringence 1.6.5.1, 1.6.5.1, 1.6.5.1, 1.6.5.1, 1.6.5.6, 1.6.5.6, 1.6.5.6
compensator
Babinet 1.6.4.10
Ehringhaus 1.6.4.10, 1.6.4.10
Sénarmont 1.6.4.10
Cotton–Mouton effect 1.6.2.11, 1.6.2.11
crystal optics 1.6.3.1
classical 1.6.1
dextrorotation 1.6.5.1, 1.6.5.1, 1.6.5.1, 1.6.5.4
dextrorotatory solution 1.6.5.5
dichroism 1.6.4.15
circular 1.6.5.1
linear 1.6.5.1
dielectric (or electric) polarization 1.6.2.2
dielectric constant 1.6.2.2, 1.6.2.2, 1.6.2.2, 1.6.2.2
dielectric displacement 1.6.3.1, 1.6.5.4, 1.6.5.5
dielectric impermeability 1.6.6, 1.6.6.2, 1.6.7.1, 1.6.7.2
relative 1.6.3.3
dielectric impermeability tensor 1.6.3.3, 1.6.3.3, 1.6.6.2, 1.6.7.3
dielectric susceptibility 1.6.2.2, 1.6.2.2
dielectric tensor 1.6.3.1, 1.6.3.2, 1.6.3.3, 1.6.5.2, 1.6.5.2, 1.6.5.5
effective, symmetry of 1.6.5.3
dispersion 1.6.4.5, 1.6.4.16
birefringent 1.6.5.1
optical rotatory 1.6.5.1
spatial 1.6.5.2
X-ray anomalous 1.6.5.1
double refraction 1.6.3.2, 1.6.4.4, 1.6.4.4, 1.6.4.6
Ehringhaus compensator 1.6.4.10
elastic stiffnesses 1.6.7.1
elasto-optic material 1.6.2.12
elasto-optic tensor 1.6.7.2
linear 1.6.7.1
electric dipole operator 1.6.5.1
electric effect
linear 1.6.2.8
quadratic 1.6.2.4
electro-optic effect 1.6.2, 1.6.2, 1.6.6.1, 1.6.6.1, 1.6.7.1
nonlinear 1.6.2
quadratic 1.6.2.7, 1.6.2.11
electro-optic materials 1.6.6.2
electro-optic tensor 1.6.6, 1.6.6.2
ellipticity 1.6.5.6, 1.6.5.6, 1.6.5.6
extinction
straight 1.6.4.14, 1.6.4.14
symmetrical 1.6.4.14
Faraday rotation 1.6.2.10
ferroelastic phase 1.6.7.2
ferroelastic transition 1.6.7.1
ferroelectric materials 1.6.2.1, 1.6.2.1, 1.6.7.2
ferromagnetism 1.6.2.1
figure of merit
for acousto-optic materials 1.6.7.3
focal plane (back) 1.6.4.11, 1.6.4.11, 1.6.4.11
four-wave mixing 1.6.2.9
fringe counting 1.6.4.7, 1.6.4.8
gallium arsenide (GaAs) 1.6.7.3, 1.6.7.3, 1.6.7.3
gyration vector 1.6.5.4, 1.6.5.4, 1.6.5.4, 1.6.5.5, 1.6.5.5
hypersthene [(Mg,Fe)2Si2O6] 1.6.4.15
interference figures 1.6.4.11, 1.6.4.14, 1.6.4.16, 1.6.4.16
Jones matrix 1.6.5.5, 1.6.5.5
laevorotation 1.6.5.1, 1.6.5.4
lithium niobate (LiNbO3) 1.6.6.2, 1.6.6.2
magnetic induction 1.6.3.1
magneto-optic effect 1.6.2, 1.6.2
linear 1.6.2
nonlinear 1.6.2
quadratic 1.6.2.11
Maxwell's equations 1.6.3.1
nonlinear optics 1.6.2, 1.6.2, 1.6.3.1
numerical aperture 1.6.4.1
objective lens 1.6.4.1
obtuse bisectrix figure 1.6.4.13, 1.6.4.13, 1.6.4.13, 1.6.4.14
olivine 1.6.4.5
optical activity 1.6.2.3, 1.6.5.1, 1.6.5.2
optical anisotropy 1.6.3.2
optical path difference 1.6.4.6
optical rectification 1.6.2.6
optical rotation 1.6.2.3, 1.6.4.12, 1.6.5.5, 1.6.5.6
optical rotatory power 1.6.5.4, 1.6.5.5
optics
linear 1.6.2, 1.6.3
parametric amplification 1.6.2.6
permittivity of vacuum 1.6.3.1
permutation tensor 1.6.5.4
perovskites 1.6.7.2, 1.6.7.2
phase conjugation 1.6.2.9
photoelastic effect 1.6.2, 1.6.2, 1.6.2, 1.6.2
linear 1.6.2.12, 1.6.7
piezoelectric effect 1.6.6.1
piezoelectric tensor 1.6.2.5, 1.6.6, 1.6.6
piezo-optic effect 1.6.2.12, 1.6.2.12, 1.6.7.1, 1.6.7.1
piezo-optic tensor 1.6.7.1
plagioclase 1.6.4.5, 1.6.4.16
polarizability operator 1.6.5.1
polarization
elliptical 1.6.5.6, 1.6.5.6
polarizing microscope 1.6.4.1, 1.6.4.2, 1.6.4.10, 1.6.4.10, 1.6.4.16
principle of superposition 1.6.5.6
refractive index 1.6.2.2, 1.6.2.13, 1.6.3.1
calculation of 1.6.5.1
changes due to strain 1.6.7.1
extraordinary 1.6.3.2
measurement of 1.6.4.5
ordinary 1.6.3.2
real and imaginary components 1.6.5.1
variation with wavelength 1.6.4.16
rotating stage 1.6.4.1
second harmonic generation (SHG) 1.6.2.6
electric-field induced 1.6.2.8
Sénarmont compensator 1.6.4.10
sensitive tint 1.6.4.6, 1.6.4.8, 1.6.4.9
shear strain 1.6.7.3
spontaneous polarization 1.6.2.1
spontaneous strain 1.6.7.1, 1.6.7.2
strain birefringence 1.6.7.1
strain-optic tensor 1.6.7.1
electro-optic, third-order 1.6.2.5
higher-order 1.6.2
optical, third-order 1.6.2.9
susceptibility tensor 1.6.6.2, 1.6.6.2
triaxial ellipsoid 1.6.3.2
trichroic crystals 1.6.4.15
twin domains 1.6.7.1
twinkling 1.6.4.4
twinning 1.6.7.1
two-wave mixing 1.6.2.6
uniaxial classes 1.6.4.11, 1.6.4.14
uniaxial ellipsoid 1.6.3.2
uniaxial figure 1.6.4.12, 1.6.4.13, 1.6.4.13
uniaxial negative 1.6.4.12, 1.6.4.12
uniaxial positive 1.6.4.12
universal stage 1.6.4.14
velocity of sound 1.6.7.3
fast 1.6.4.9
slow 1.6.4.9
Voigt notation 1.6.6, 1.6.6.2
X-ray anomalous dispersion 1.6.5.1