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II-VI and I-VII Compounds; Semimagnetic Compounds

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Table of Contents

  1. Altmetric Badge
    Book Overview
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    Chapter 3 I-VII compounds comparative tables on crystal structure of phases at normal conditions
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    Chapter 7 Cuprous chloride (gamma-CuCl) energy gaps
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    Chapter 10 Cuprous chloride (gamma-CuCl) transition energies to higher excited exciton states
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    Chapter 11 Cuprous chloride (gamma-CuCl) exciton splitting energies
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    Chapter 13 Cuprous chloride (gamma-CuCl) exchange energies
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    Chapter 14 Cuprous chloride (gamma-CuCl) exciton radii and binding energy
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    Chapter 16 Cuprous chloride (gamma-CuCl) free carrier effective masses
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    Chapter 17 Cuprous chloride (gamma-CuCl) exciton effective masses
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    Chapter 22 Cuprous chloride (gamma-CuCl) electronic properties of NaCl-type CuCl
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    Chapter 29 Cuprous chloride (gamma-CuCl) ambipolar diffusion of excitons
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    Chapter 32 Cuprous chloride (gamma-CuCl) piezoelectric stress coefficient
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    Chapter 35 Cuprous chloride (gamma-CuCl) third-order nonlinear dielectric susceptibility electromagnetic coupling constant
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    Chapter 38 Cuprous bromide (gamma-CuBr) band structure, energy gaps
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    Chapter 39 Cuprous bromide (gamma-CuBr) exciton energies
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    Chapter 41 Cuprous bromide (gamma-CuBr) edge exciton energies
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    Chapter 42 Cuprous bromide (gamma-CuBr) exciton splitting energies
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    Chapter 47 Cuprous bromide (gamma-CuBr) biexciton parameters
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    Chapter 50 Cuprous bromide (gamma-CuBr) electronic properties of NaCl-type CuBr
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    Chapter 51 Cuprous bromide (gamma-CuBr) crystal structure, high-pressure modifications
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    Chapter 57 Cuprous bromide (gamma-CuBr) birefringence, electrooptic and elastooptic constants
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    Chapter 58 Cuprous bromide (gamma-CuBr) second order nonlinear parameters
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    Chapter 60 Cuprous bromide (gamma-CuBr) Debye temperature, heat capacity, melting point, density
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    Chapter 61 Cuprous iodide (gamma-CuI) band structure, energy gap
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    Chapter 64 Cuprous iodide (gamma-CuI) exciton radii, binding energy and other exciton parameters
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    Chapter 67 Cuprous iodide (gamma-CuI) deformation potentials
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    Chapter 72 Cuprous iodide (gamma-CuI) ionic conductivity
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    Chapter 73 Cuprous iodide (gamma-CuI) dielectric constants, refractive index
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    Chapter 75 Cuprous iodide (gamma-CuI) magnetic susceptibility
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    Chapter 76 Cuprous iodide (gamma-CuI) Debye temperature, heat capacity, melting point, density
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    Chapter 79 Silver monofluoride (AgF) dielectric constants, refractive index
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    Chapter 83 Silver chloride (AgCl) deformation potential
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    Chapter 86 Silver chloride (AgCl) effective masses, further band parameters
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    Chapter 89 Silver chloride (AgCl) impurities and intrinsic defects: infrared absorption spectra
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    Chapter 97 Silver chloride (AgCl) electrical and thermal transport
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    Chapter 98 Silver chloride (AgCl) refractive index, dielectric constants
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    Chapter 103 Silver bromide (AgBr) exciton energies
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    Chapter 108 Silver bromide (AgBr) biexciton parameters
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    Chapter 114 Silver bromide (AgBr) phonon dispersion
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    Chapter 116 Silver bromide (AgBr) elastic moduli and compliances
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    Chapter 120 Silver bromide (AgBr) Debye temperature, heat capacity, melting point, density
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    Chapter 127 Silver iodide (AgI) effective and reduced masses
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    Chapter 132 Silver iodide (AgI) sound velocities, elastic moduli and compliances, compressibility and related data
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    Chapter 133 Silver iodide (AgI) lattice properties of gamma-AgI and f.c.c-AgI
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    Chapter 136 Silver iodide (AgI) piezoelectric stress coefficient
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    Chapter 137 Silver iodide (AgI) far-infrared reflectivity and transmission
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    Chapter 142 Cuprous iodide (gamma-CuI) lattice parameters, thermal expansion
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    Chapter 143 Cuprous fluoride (CuF) physical properties
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    Chapter 145 Cadmium manganese arsenide (Cd(1-x)Mn(x))3As2 physical properties
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    Chapter 146 Zinc manganese arsenide (Zn(1-x)Mn(x))3As2 physical properties
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    Chapter 149 Semimagnetic semiconductors general remarks and important formulae for narrow gap semiconductors
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    Chapter 151 Mercury manganese telluride - Hg(1-x)Mn(x)Te band structure, general
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    Chapter 152 Mercury manganese telluride - Hg(1-x)Mn(x)Te band structure parameters
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    Chapter 155 Mercury manganese telluride - Hg(1-x)Mn(x)Te lattice properties, dielectric constants
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    Chapter 170 Mercury iron telluride (Hg(1-x)Fe(x)Te) physical properties
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    Chapter 172 Mercury iron sulfide (Hg(1-x)Fe(x)S) physical properties
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    Chapter 178 Zinc iron sulfide (Zn(1-x)Fe(x)S) physical properties
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    Chapter 179 Mercury cobalt selenide (Hg(1-x)Co(x)Se) physical properties
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    Chapter 180 Cadmium cobalt telluride (Cd(1-x)Co(x)Te) physical properties
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    Chapter 184 Zinc cobalt selenide (Zn(1-x)Co(x)Se) physical properties
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    Chapter 185 Zinc cobalt sulfide (Zn(1-x)Co(x)S) physical properties
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    Chapter 187 Cadmium chromium telluride (Cd(1-x)Cr(x)Te) physical properties
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    Chapter 188 Cadmium chromium sulfide (Cd(1-x)Cr(x)S) physical properties
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    Chapter 190 Zinc chromium selenide (Zn(1-x)Cr(x)Se) physical properties
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    Chapter 194 Lead europium sulfide (Pb(1-x)Eu(x)S) physical properties
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    Chapter 197 II-VI compounds crystal structure, space group and lattice parameters of IIA-VIB compounds
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    Chapter 198 II-VI compounds crystal structure, space group and lattice parameters of IIB-VIB compounds
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    Chapter 202 II-VI compounds chemical bond in II-VI compounds
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    Chapter 203 Magnesium oxide (MgO) band structure
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    Chapter 205 Magnesium oxide (MgO) impurities and defects
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    Chapter 212 Magnesium oxide (MgO) electrical and thermal transport properties
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    Chapter 215 Magnesium oxide (MgO) Debye temperature, heat capacity, density, melting and boiling points, hardness
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    Chapter 221 Calcium oxide (CaO) energy gap, interband transition energies
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    Chapter 222 Calcium oxide (CaO) effective and polaron masses, Fröhlich coupling constant
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    Chapter 226 Calcium oxide (CaO) sound velocities, elastic moduli
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    Chapter 229 Calcium oxide (CaO) electrical and thermal transport properties
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    Chapter 231 Calcium oxide (CaO) magnetic properties
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    Chapter 232 Calcium oxide (CaO) Debye temperature, heat capacity, density, melting and boiling points, hardness
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    Chapter 234 Strontium oxide (SrO) band structure, energy gap
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    Chapter 235 Strontium oxide (SrO) effective and polaron masses, Fröhlich coupling constant
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    Chapter 238 Strontium oxide (SrO) phonon dispersion and phonon frequencies
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    Chapter 239 Strontium oxide (SrO) sound velocities, elastic moduli
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    Chapter 240 Strontium oxide (SrO) Young’s, shear and bulk modulus, Poisson’s ratio
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    Chapter 244 Strontium oxide (SrO) magnetic properties
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    Chapter 245 Strontium oxide (SrO) Debye temperature, heat capacity, density, melting and boiling points, hardness .
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    Chapter 247 Barium oxide (BaO) band structure, energy gap
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    Chapter 248 Barium oxide (BaO) effective masses, Fröhlich coupling constant
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    Chapter 249 Barium oxide (BaO) impurities and defects
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    Chapter 250 Barium oxide (BaO) crystal structure, lattice parameters, thermal expansion
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    Chapter 251 Barium oxide (BaO) phonon dispersion and phonon frequencies
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    Chapter 253 Barium oxide (BaO) bulk modulus, effective ion charge
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    Chapter 255 Barium oxide (BaO) dielectric constants, optical and photoelectric properties
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    Chapter 258 Barium oxide (BaO) thermodynamical properties
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    Chapter 260 Zinc oxide (ZnO) energies of symmetry points of the band structure
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    Chapter 263 Zinc oxide (ZnO) exciton transition energies
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    Chapter 264 Zinc oxide (ZnO) further exciton data
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    Chapter 268 Zinc oxide (ZnO) electron effective masses
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    Chapter 270 Zinc oxide (ZnO) deformation potentials
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    Chapter 273 Zinc oxide (ZnO) ionization energies of deep impurities
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    Chapter 274 Zinc oxide (ZnO) deep impurity inner transition energies
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    Chapter 276 Zinc oxide (ZnO) isotope shift effects of impurity transitions
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    Chapter 277 Zinc oxide (ZnO) quantum efficiencies eta and decay times tau of impurity transitions
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    Chapter 280 Zinc oxide (ZnO) excitons bound to neutral donors
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    Chapter 282 Zinc oxide (ZnO) wavenumbers of absorption peaks
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    Chapter 287 Zinc oxide (ZnO) distances, ionic radii, further lattice parameters
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    Chapter 289 Zinc oxide (ZnO) effective ionic charge
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    Chapter 292 Zinc oxide (ZnO) phonon wavenumbers: combination modes
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    Chapter 293 Zinc oxide (ZnO) Raman and surface phonon wavenumbers
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    Chapter 297 Zinc oxide (ZnO) electromechanical coupling factor
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    Chapter 301 Zinc oxide (ZnO) thermoelectric power
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    Chapter 302 Zinc oxide (ZnO) surface conductivity
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    Chapter 304 Zinc oxide (ZnO) optical properties and spectra
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    Chapter 305 Zinc oxide (ZnO) refractive index
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    Chapter 308 Zinc oxide (ZnO) electrooptical constants
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    Chapter 309 Zinc oxide (ZnO) light absorption in crystals with admixtures
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    Chapter 310 Zinc oxide (ZnO) nonlinear optical properties
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    Chapter 311 Zinc oxide (ZnO) magnetic susceptibility
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    Chapter 317 Zinc sulfide (ZnS) exciton and electron-hole liquid binding energies, cubic modification
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    Chapter 318 Zinc sulfide (ZnS) Fröhlich and exciton-phonon coupling constants cubic modification
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    Chapter 320 Zinc sulfide (ZnS) spin-orbit splitting, g-factor, cubic modification
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    Chapter 321 Zinc sulfide (ZnS) effective masses, cubic modification
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    Chapter 323 Zinc sulfide (ZnS) band structure, hexagonal modification
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    Chapter 327 Zinc sulfide (ZnS) crystal field and spin-orbit splitting, g-factor, hexagonal modification
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    Chapter 328 Zinc sulfide (ZnS) effective masses, Luttinger parameters, hexagonal modification
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    Chapter 337 Zinc sulfide (ZnS) isotope shift effects of impurity transitions
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    Chapter 340 Zinc sulfide (ZnS) energy and capture cross section of traps possibly due to acceptors and donors
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    Chapter 342 Zinc sulfide (ZnS) native defects: general
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    Chapter 343 Zinc sulfide (ZnS) native defects: special defects
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    Chapter 344 Zinc sulfide (ZnS) impurities in ZnS: scandium
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    Chapter 346 Zinc sulfide (ZnS) impurities in ZnS: vanadium
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    Chapter 352 Zinc sulfide (ZnS) impurities in ZnS: copper
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    Chapter 356 Zinc sulfide (ZnS) impurities in ZnS: further associated defects
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    Chapter 362 Zinc sulfide (ZnS) transformation temperature and pressure
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    Chapter 366 Zinc sulfide (ZnS) electronic polarizability, ionicity
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    Chapter 369 Zinc sulfide (ZnS) phonon wavenumbers, hexagonal modification
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    Chapter 372 Zinc sulfide (ZnS) surface optical phonon wavenumber, cubic modification
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    Chapter 378 Zinc sulfide (ZnS) elastic moduli, pressure dependence
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    Chapter 384 Zinc sulfide (ZnS) (photo)conductivity, resistivity, cubic modification
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    Chapter 386 Zinc sulfide (ZnS) thermal conductivity
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    Chapter 389 Zinc sulfide (ZnS) refractive index, hexagonal modification
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    Chapter 391 Zinc sulfide (ZnS) bulk-photovoltaic effect, thin films
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    Chapter 394 Zinc sulfide (ZnS) electrooptical constants
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    Chapter 398 Zinc sulfide (ZnS) photodielectric effect
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    Chapter 399 Zinc sulfide (ZnS) energy efficiency of cathodoluminescence
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    Chapter 400 Zinc sulfide (ZnS) electron yield, electron affinity
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    Chapter 404 Zinc sulfide (ZnS) Raman and Faraday effects, multi-phonon spectra
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    Chapter 406 Zinc sulfide (ZnS) Debye temperature
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    Chapter 407 Zinc sulfide (ZnS) heat capacity
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    Chapter 410 Zinc sulfide (ZnS) melting point
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    Chapter 412 Zinc sulfide (ZnS) thermodynamical parameters
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    Chapter 413 Zinc selenide (ZnSe) band structure
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    Chapter 417 Zinc selenide (ZnSe) temperature and pressure dependence of exciton energies
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    Chapter 423 Zinc selenide (ZnSe) Luttinger parameters, exchange parameter
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    Chapter 425 Zinc selenide (ZnSe) oscillator strengths
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    Chapter 426 Zinc selenide (ZnSe) exciton Rydberg energy
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    Chapter 427 Zinc selenide (ZnSe) electron-hole interaction parameter
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    Chapter 431 Zinc selenide (ZnSe) chemical and g-values of shallow impurities
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    Chapter 435 Zinc selenide (ZnSe) emission energies
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    Chapter 436 Zinc selenide (ZnSe) zero-phonon lines
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    Chapter 439 Zinc selenide (ZnSe) decay times of acceptor-bound-exciton luminescence
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    Chapter 442 Zinc selenide (ZnSe) transitions into excited electronic states of donor-bound-exciton complexes
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    Chapter 458 Zinc selenide (ZnSe) phonon dispersion
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    Chapter 461 Zinc selenide (ZnSe) pressure dependence of phonon wavenumbers
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    Chapter 464 Zinc selenide (ZnSe) elastic moduli and compliances
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    Chapter 465 Zinc selenide (ZnSe) compressibility, piezoelectric stress and strain
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    Chapter 471 Zinc selenide (ZnSe) thermoelectric power, thermal conductivity
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    Chapter 473 Zinc selenide (ZnSe) absorption coefficient
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    Chapter 478 Zinc selenide (ZnSe) radiation damage
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    Chapter 480 Zinc selenide (ZnSe) Debye temperature, heat capacity, Schottky barrier heights
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    Chapter 484 Zinc telluride (ZnTe) energy gap
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    Chapter 487 Zinc telluride (ZnTe) effective masses
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    Chapter 488 Zinc telluride (ZnTe) Fröhlich coupling constant, g-factors
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    Chapter 502 Zinc telluride (ZnTe) piezoelectric stress coefficient, photoelastic constants, electrooptic coefficient
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    Chapter 505 Zinc telluride (ZnTe) thermodynamical properties
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    Chapter 506 Cadmium oxide (CdO) band structure
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    Chapter 508 Cadmium oxide (CdO) energy gap
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    Chapter 509 Cadmium oxide (CdO) interband transition energies
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    Chapter 511 Cadmium oxide (CdO) impurities and defects
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    Chapter 512 Cadmium oxide (CdO) crystal structure, lattice parameters, thermal expansion
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    Chapter 514 Cadmium oxide (CdO) transport properties, carrier mobilitities
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    Chapter 516 Cadmium oxide (CdO) magnetic properties
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    Chapter 519 Cadmium sulfide (CdS) band structure, hexagonal modification
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    Chapter 520 Cadmium sulfide (CdS) valence band energies, hexagonal modification
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    Chapter 521 Cadmium sulfide (CdS) energy gaps, hexagonal modification
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    Chapter 524 Cadmium sulfide (CdS) energy gap pressure and temperature coefficients, hexagonal modification
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    Chapter 525 Cadmium sulfide (CdS) interband transition energies, hexagonal modification
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    Chapter 528 Cadmium sulfide (CdS) g-factors, hexagonal modification
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    Chapter 529 Cadmium sulfide (CdS) diamagnetic shift, Luttinger parameter, deformation potentials,
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    Chapter 534 Cadmium sulfide (CdS) dense exciton systems, hexagonal modification
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    Chapter 538 Cadmium sulfide (CdS) band structure, energy gap, cubic modification
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    Chapter 540 Cadmium sulfide (CdS) band structure, zincblende modification
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    Chapter 548 Cadmium sulfide (CdS) phonon dispersion
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    Chapter 554 Cadmium sulfide (CdS) piezoelectric stress and strain coefficients
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    Chapter 556 Cadmium sulfide (CdS) vibrational amplitudes, bulk modulus
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    Chapter 557 Cadmium sulfide (CdS) compressibilities, Grueneisen parameters, effective charges
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    Chapter 572 Cadmium sulfide (CdS) optical rectification and bistability
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    Chapter 573 Cadmium sulfide (CdS) linear and quadratic electrooptic coefficients
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    Chapter 579 Cadmium selenide (CdSe) band structure, hexagonal modification
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    Chapter 581 Cadmium selenide (CdSe) valence band splitting parameters, hexagonal modification
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    Chapter 582 Cadmium selenide (CdSe) energy gap, temperature and pressure coefficients, hexagonal modification
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    Chapter 583 Cadmium selenide (CdSe) interband transition energies, hexagonal modification
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    Chapter 586 Cadmium selenide (CdSe) g-factors, hexagonal modification
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    Chapter 589 Cadmium selenide (CdSe) dense exciton systems, hexagonal modification
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    Chapter 595 Cadmium selenide (CdSe) crystal structure, modifications
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    Chapter 599 Cadmium selenide (CdSe) local mode wavenumbers
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    Chapter 600 Cadmium selenide (CdSe) sound velocities
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    Chapter 601 Cadmium selenide (CdSe) elastic moduli
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    Chapter 604 Cadmium selenide (CdSe) electrical transport
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    Chapter 605 Cadmium selenide (CdSe) electrical conductivity, carrier concentration, magnetoresistance
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    Chapter 610 Cadmium selenide (CdSe) optical properties, general, refractive index
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    Chapter 617 Cadmium selenide (CdSe) electrooptic and non-linear coefficients
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    Chapter 618 Cadmium selenide (CdSe) magnetic properties
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    Chapter 620 Cadmium selenide (CdSe) thermodynamical properties, phase diagram
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    Chapter 624 Cadmium telluride (CdTe) critical point and splitting energies
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    Chapter 626 Cadmium telluride (CdTe) g-factors, k-linear terms
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    Chapter 630 Cadmium telluride (CdTe) impurities and defects: ionization energies
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    Chapter 633 Cadmium telluride (CdTe) bound excitons, donor-acceptor pairs
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    Chapter 637 Cadmium telluride (CdTe) sound velocities, elastic moduli
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    Chapter 639 Cadmium telluride (CdTe) Grueneisen parameter, stress and strain coefficient
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    Chapter 643 Cadmium telluride (CdTe) thermodynamic properties, vapor pressure, phase diagram
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    Chapter 645 Mercury sulfide (HgS) crystal structure, modifications
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    Chapter 646 Mercury sulfide (HgS) band energies, impurities: alpha-HgS (trigonal) (red cinnabar)
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    Chapter 651 Mercury sulfide (HgS) band structure, energy gap, effective masses: beta-HgS (zincblende structure)
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    Chapter 652 Mercury sulfide (HgS) further lattice properties: beta-HgS (zincblende structure)
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    Chapter 655 Mercury sulfide (HgS) thermodynamic properties
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    Chapter 656 Mercury selenide (HgSe) band structure, energy gap
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    Chapter 659 Mercury selenide (HgSe) impurities and defects
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    Chapter 661 Mercury selenide (HgSe) phonon dispersion and phonon wavenumbers
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    Chapter 662 Mercury selenide (HgSe) elastic moduli
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    Chapter 665 Mercury selenide (HgSe) optical properties, dielectric constants
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    Chapter 666 Mercury selenide (HgSe) Debye temperature, heat capacity, melting point, density, hardness
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    Chapter 670 Mercury telluride (HgTe) critical point energies
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    Chapter 671 Mercury telluride (HgTe) spin-orbit splitting, k-linear term
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    Chapter 672 Mercury telluride (HgTe) effective masses
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    Chapter 675 Mercury telluride (HgTe) impurities and defects
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    Chapter 690 ZnS(1-x)Se(x) transport properties
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    Chapter 691 ZnS(1-x)Se(x) optical properties
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    Chapter 694 ZnSe(x)Te(1-x) impurities and defects
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    Chapter 698 CdS(1-x)Se(x) optical properties
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    Chapter 702 CdSe(x)Te(1-x) transport and optical properties
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    Chapter 703 Zn(x)Cd(1-x)O physical properties
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    Chapter 706 Zn(x)Cd(1-x)S lattice parameters, phase diagrams
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    Chapter 707 Zn(x)Cd(1-x)S transport properties
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    Chapter 712 Zn(x)Cd(1-x)Se optical properties
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    Chapter 722 Zn(x)Hg(1-x)Se physical properties
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    Chapter 729 Hg(1-x)Cd(x)Te effective masses
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    Chapter 731 Hg(1-x)Cd(x)Te lattice properties
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    Chapter 734 Beryllium compounds (Be-VI) general properties
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    Chapter 735 Beryllium oxide (BeO) electronic properties
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    Chapter 738 Beryllium oxide (BeO) transport and optical properties
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    Chapter 739 Beryllium oxide (BeO) optical properties
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    Chapter 740 Beryllium oxide (BeO) further properties
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    Chapter 741 Beryllium sulfide (BeS) physical properties
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    Chapter 744 Indium manganese arsenide In(1-x)Mn(x)As physical properties
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    Chapter 745 Gallium manganese arsenide Ga(1-x)Mn(x)As physical properties
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    Chapter 749 Lead manganese sulfide - Pb(1-x)Mn(x)S physical properties
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    Chapter 750 Lead tin manganese selenide - Pb(1-x-y)Sn(y)Mn(x)Se physical properties
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Title
II-VI and I-VII Compounds; Semimagnetic Compounds
Published by
Springer Berlin Heidelberg, January 1999
DOI 10.1007/b71137
ISBNs
978-3-54-064964-9, 978-3-54-031359-5
Editors

Madelung, O., Rössler, U., Schulz, M.

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United States 3 4%
Germany 1 1%
United Kingdom 1 1%
France 1 1%
Canada 1 1%
Slovakia 1 1%
Unknown 68 89%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 24 32%
Student > Bachelor 9 12%
Student > Master 9 12%
Researcher 8 11%
Other 3 4%
Other 8 11%
Unknown 15 20%
Readers by discipline Count As %
Physics and Astronomy 28 37%
Chemistry 12 16%
Engineering 10 13%
Materials Science 8 11%
Energy 1 1%
Other 2 3%
Unknown 15 20%