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Group IV Elements, IV-IV and III-V Compounds. Part b - Electronic, Transport, Optical and Other Properties

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Cover of 'Group IV Elements, IV-IV and III-V Compounds. Part b - Electronic, Transport, Optical and Other Properties'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 General Introduction
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    Chapter 2 Symbols, abbreviations, conversion factors
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    Chapter 3 Solid solutions between III-V compounds, general remarks
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    Chapter 4 B(x)Ga(1-x)N, physical data
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    Chapter 5 B(x)Ga(1-x)P, physical data
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    Chapter 6 B(x)Ga(1-x)As, physical data
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    Chapter 7 Al(x)Ga(1-x)N, physical data
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    Chapter 8 Al(x)Ga(1-x)P, physical data
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    Chapter 9 Al(x)Ga(1-x)Sb, electronic properties
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    Chapter 10 Al(x)Ga(1-x)Sb, further properties
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    Chapter 11 Al(x)In(1-x)P, physical properties
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    Chapter 12 Al(x)In(1-x)As physical properties
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    Chapter 13 Al(x)In(1-x)Sb, physical properties
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    Chapter 14 Ga(x)In(1-x)N, physical properties
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    Chapter 15 Ga(x)In(1-x)P, electronic properties
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    Chapter 16 Ga(x)In(1-x)P, further properties
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    Chapter 17 Ga(x)In(1-x)As, physical properties
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    Chapter 18 Ga(x)In(1-x)Sb, physical properties
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    Chapter 19 AlN(x)P(1-x), physical properties
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    Chapter 20 AlAs(1-x)P(x), physical properties
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    Chapter 21 GaN(x)P(1-x), physical properties
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    Chapter 22 GaN(x)As(1-x), physical properties
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    Chapter 23 GaP(x)As(1-x), physical properties
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    Chapter 24 GaP(x)Sb(1-x), physical properties
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    Chapter 25 GaAs(1-x)Sb(x), physical properties
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    Chapter 26 InP(x)As(1-x), physical properties
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    Chapter 27 InP(x)Sb(1-x), physical properties
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    Chapter 28 InAs(x)Sb(1-x), physical properties
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    Chapter 29 InBi(x)As(1-x), physical properties
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    Chapter 30 InBi(x)Sb(1-x), physical properties
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    Chapter 31 Quaternary alloys of the type III(x)-III(1-x)-V(y)-V(1-y), general remarks
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    Chapter 32 Ga(x)In(1-x)As(y)P(1-y), physical properties
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    Chapter 33 Ga(x)In(1-x)As(y)Sb(1-y), physical properties
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    Chapter 34 Al(x)Ga(1-x)As(y)Sb(1-y), physical properties
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    Chapter 35 In(1-x-y)Al(x)Ga(y)P, physical properties
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    Chapter 36 In(1-x-y)Al(x)Ga(y)As, physical properties
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    Chapter 37 In(1-x-y)Al(x)Ga(y)Sb, physical properties
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    Chapter 38 InAs(1-x-y)Sb(y)P(x), physical properties
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    Chapter 39 Ordering effects in Al(x)In(1-x)P, Ga(x)In(1-x)P, Ga(x)In(1-x)As, In(1-x)Sb(x)As
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    Chapter 40 Solid solutions between III-V and II-VI compounds, comparative table
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    Chapter 41 Solid solutions between III-V compounds and group IV elements, data
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    Chapter 42 Boron phosphide (BP), band structure, energy gap
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    Chapter 43 Boron phosphide (BP), higher energy optical transitions
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    Chapter 44 Boron phosphide (BP), deformation potentials
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    Chapter 45 Boron phosphide (BP), impurities and defects
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    Chapter 46 Boron phosphide (BP), crystal structure, lattice parameters, thermal expansion
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    Chapter 47 Boron phosphide (BP), phonon energies and wavenumbers
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    Chapter 48 Boron phosphide (BP), elastic moduli, bulk a. shear modulus, mode Grüneisen param., eff. charge
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    Chapter 49 Boron phosphide (BP), electrical and thermal conductivity
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    Chapter 50 Boron phosphide (BP), further transport properties
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    Chapter 51 Boron phosphide (BP), optical properties, dielectric constant
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    Chapter 52 Boron phosphide (BP), Debye temperature, melting point, hardness
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    Chapter 53 Boron phosphide (BP), thermodynamical properties
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    Chapter 54 Boron arsenide (BAs), band structure
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    Chapter 55 Boron arsenide (BAs), crystal structure, density, Debye temperature
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    Chapter 56 Boron arsenide (BAs), thermodynamical data
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    Chapter 57 Boron antimonide (BSb), physical properties
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    Chapter 58 Aluminum phosphide (AlP), band structure, energies of symmetry points
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    Chapter 59 Aluminum phosphide (AlP), band gaps
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    Chapter 60 Aluminum phosphide (AlP), effective masses
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    Chapter 61 Aluminum phosphide (AlP), parameters of valence band
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    Chapter 62 Aluminum phosphide (AlP), impurities and defects
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    Chapter 63 Aluminum phosphide (AlP), crystal structure, transition pressures
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    Chapter 64 Aluminum phosphide (AlP), lattice parameter
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    Chapter 65 Aluminum phosphide (AlP), phonon dispersion, phonon wavenumbers
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    Chapter 66 Aluminum phosphide (AlP), elastic moduli, bulk modulus
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    Chapter 67 Aluminum phosphide (AlP), electrical and thermal transport
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    Chapter 68 Aluminum phosphide (AlP), optical properties, dielectric constants
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    Chapter 69 Aluminum phosphide (AlP), Debye temperature, density, melting point
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    Chapter 70 Aluminum phosphide (AlP), thermodynamical parameters, vaporization
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    Chapter 71 Aluminum arsenide (AlAs), band structure
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    Chapter 72 Aluminum arsenide (AlAs), energies of symmetry points of the band structure
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    Chapter 73 Aluminum arsenide (AlAs), energy gaps
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    Chapter 74 Aluminum arsenide (AlAs), exciton binding energy
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    Chapter 75 Aluminum arsenide (AlAs), intra- and interband transition energies, spin-orbit splitting
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    Chapter 76 Aluminum arsenide (AlAs), camel’s back structure of the conduction band at X:
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    Chapter 77 Aluminum arsenide (AlAs), effective masses
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    Chapter 78 Aluminum arsenide (AlAs), band structure parameters, deformation potentials
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    Chapter 79 Aluminum arsenide (AlAs), impurities and defects
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    Chapter 80 Aluminum arsenide (AlAs), crystal structure, lattice parameters, thermal expansion
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    Chapter 81 Aluminum arsenide (AlAs), phonon dispersion, phonon wavenumbers
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    Chapter 82 Aluminum arsenide (AlAs), sound velocities
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    Chapter 83 Aluminum arsenide (AlAs), elastic moduli, compliances and derived parameters
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    Chapter 84 Aluminum arsenide (AlAs), electrical and thermal conductivity, carrier concentration
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    Chapter 85 Aluminum arsenide (AlAs), carrier mobilities, Seebeck coefficient
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    Chapter 86 Aluminum arsenide (AlAs), optical properties, refractive index, dielectric constants
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    Chapter 87 Aluminum arsenide (AlAs), Debye temperature, hardness, density, melting point
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    Chapter 88 Aluminum arsenide (AlAs), thermodynamical parameters
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    Chapter 89 Aluminum antimonide (AlSb), band structure, energies of symmetry points
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    Chapter 90 Aluminum antimonide (AlSb), energy gaps
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    Chapter 91 Aluminum antimonide (AlSb), exciton binding energy
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    Chapter 92 Aluminum antimonide (AlSb), conduction band, camel’s back structure and effective masses
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    Chapter 93 Aluminum antimonide (AlSb), spin-orbit splitting energies
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    Chapter 94 Aluminum antimonide (AlSb), critical point energies
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    Chapter 95 Aluminum antimonide (AlSb), core level energies
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    Chapter 96 Aluminum antimonide (AlSb), conduction band, effective masses
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    Chapter 97 Aluminum antimonide (AlSb), valence band, effective masses
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    Chapter 98 Aluminum antimonide (AlSb), further valence band parameter
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    Chapter 99 Aluminum antimonide (AlSb), deformation potentials
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    Chapter 100 Aluminum antimonide (AlSb), impurities and defects
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    Chapter 101 Aluminum antimonide (AlSb), crystal structure of various phases
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    Chapter 102 Aluminum antimonide (AlSb), lattice parameter, thermal expansion
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    Chapter 103 Aluminum antimonide (AlSb), phonon dispersion, phonon wavenumbers and energies
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    Chapter 104 Aluminum antimonide (AlSb), sound velocities
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    Chapter 105 Aluminum antimonide (AlSb), elastic moduli, bulk modulus
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    Chapter 106 Aluminum antimonide (AlSb), Grüneisen parameters, effective charge
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    Chapter 107 Aluminum antimonide (AlSb), electrical and thermal conductivity
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    Chapter 108 Aluminum antimonide (AlSb), carrier concentration, Hall scattering factor
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    Chapter 109 Aluminum antimonide (AlSb), electron mobility
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    Chapter 110 Aluminum antimonide (AlSb), hole mobility
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    Chapter 111 Aluminum antimonide (AlSb), magnetoresistance
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    Chapter 112 Aluminum antimonide (AlSb), piezo- and elastoresistance
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    Chapter 113 Aluminum antimonide (AlSb), piezoelectric coefficients
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    Chapter 114 Aluminum antimonide (AlSb), Seebeck and Nernst coefficient
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    Chapter 115 Aluminum antimonide (AlSb), transport parameters near the melting temperature
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    Chapter 116 Aluminum antimonide (AlSb), optical properties, dielectric constants
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    Chapter 117 Aluminum antimonide (AlSb), piezooptic and further optical parameters
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    Chapter 118 Aluminum antimonide (AlSb), electron loss, photoelectric threshold
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    Chapter 119 Aluminum antimonide (AlSb), transitions involving core levels
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    Chapter 120 Aluminum antimonide (AlSb), Debye temperature, density, hardness, melting point
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    Chapter 121 Aluminum antimonide (AlSb), thermodynamical parameters, vaporization
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    Chapter 123 Gallium nitride (GaN), enery gap, exciton binding energy
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    Chapter 124 Gallium nitride (GaN), interband transition and splitting energies
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    Chapter 125 Gallium nitride (GaN), effective masses, g-factors, deformation potentials
  126. Altmetric Badge
    Chapter 126 Gallium nitride (GaN), crystal structure, lattice param., thermal expansion, high pressure phases
  127. Altmetric Badge
    Chapter 127 Gallium nitride (GaN), phonon data, elastic moduli, Grüneisen and rel. parameters
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    Chapter 128 Gallium nitride (GaN), electrical and thermal conductivity, electron concentration
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    Chapter 129 Gallium nitride (GaN), mobilities, Seebeck effect
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    Chapter 130 Gallium nitride (GaN), optical properties, dielectric constant
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    Chapter 131 Gallium nitride (GaN), magnetic properties
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    Chapter 132 Gallium nitride (GaN), Debye temperature, melting point, density
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    Chapter 133 Gallium nitride (GaN), thermodynamical parameters, vaporization
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    Chapter 134 Gallium phosphide (GaP), band structure
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    Chapter 135 Gallium phosphide (GaP), energies of symmetry points of the band structure
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    Chapter 136 Gallium phosphide (GaP), indirect band gaps
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    Chapter 137 Gallium phosphide (GaP), camel’s back structure of conduction band, effective masses
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    Chapter 138 Gallium phosphide (GaP), exciton ground state
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    Chapter 139 Gallium phosphide (GaP), direct energy gap
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    Chapter 140 Gallium phosphide (GaP), energy gaps, temperature and pressure dependence
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    Chapter 141 Gallium phosphide (GaP), interband transition and splitting energies
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    Chapter 142 Gallium phosphide (GaP), conduction and valence band, effective masses
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    Chapter 143 Gallium phosphide (GaP), valence band parameters
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    Chapter 144 Gallium phosphide (GaP), deformation potentials
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    Chapter 145 Gallium phosphide (GaP), crystal structure of various phases
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    Chapter 146 Gallium phosphide (GaP), lattice parameter, thermal expansion, Grüneisen parameters
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    Chapter 147 Gallium phosphide (GaP), phonon dispersion, phonon frequencies
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    Chapter 148 Gallium phosphide (GaP), critical points of phonon dispersion curves
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    Chapter 149 Gallium phosphide (GaP), sound velocities
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    Chapter 150 Gallium phosphide (GaP), elastic moduli
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    Chapter 151 Gallium phosphide (GaP), third order elastic moduli
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    Chapter 152 Gallium phosphide (GaP), Young’s moduli and torsional modulus
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    Chapter 153 Gallium phosphide (GaP), pressure dependence of elastic moduli
  154. Altmetric Badge
    Chapter 154 Gallium phosphide (GaP), bulk modulus, mode Grüneisen parameters and related data
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    Chapter 155 Gallium phosphide (GaP), transverse effective charge
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    Chapter 156 Gallium phosphide (GaP), transport mechanisms, electrical and thermal conductivity
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    Chapter 157 Gallium phosphide (GaP), piezoelectric coefficients
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    Chapter 158 Gallium phosphide (GaP), electron concentration and mobility
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    Chapter 159 Gallium phosphide (GaP), hole concentration and mobility
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    Chapter 160 Gallium phosphide (GaP), magnetoresistance, Seebeck coefficient
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    Chapter 161 Gallium phosphide (GaP), minority carrier and positron lifetimes, plasmon energy
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    Chapter 162 Gallium phosphide (GaP), optical constants
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    Chapter 163 Gallium phosphide (GaP), refractive index, absorption, reflection, dielectric constants
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    Chapter 164 Gallium phosphide (GaP), further optical properties
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    Chapter 165 Gallium phosphide (GaP), second order nonlin. dielectric susceptibilities, birefringence, etc.
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    Chapter 166 Gallium phosphide (GaP), optical properties involving core level transitions
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    Chapter 167 Gallium phosphide (GaP), data from angle integrated photoemission
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    Chapter 168 Gallium phosphide (GaP), magnetic properties
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    Chapter 169 Gallium phosphide (GaP), Debye temperature, density, hardness, heat capacity
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    Chapter 170 Gallium phosphide (GaP), thermodynamical data, vaporization
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    Chapter 171 Gallium arsenide (GaAs), band structure
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    Chapter 172 Gallium arsenide (GaAs), energies of symmetry points of the band structure
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    Chapter 173 Gallium arsenide (GaAs), direct energy gap
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    Chapter 174 Gallium arsenide (GaAs), exciton ground and excited states
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    Chapter 175 Gallium arsenide (GaAs), indirect energy gap
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    Chapter 176 Gallium arsenide (GaAs), intra- and interband transition energies
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    Chapter 177 Gallium arsenide (GaAs), spin-orbit splitting energies
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    Chapter 178 Gallium arsenide (GaAs), interband transition energies (critical point energies)
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    Chapter 179 Gallium arsenide (GaAs), core level energies
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    Chapter 180 Gallium arsenide (GaAs), conduction band effective masses and related parameters
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    Chapter 181 Gallium arsenide (GaAs), non-parabolicity and warping parameters
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    Chapter 182 Gallium arsenide (GaAs), camel’s back structure of X6 conduction band minimum
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    Chapter 183 Gallium arsenide (GaAs), other parameters related to conduction band minima, g-factors
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    Chapter 184 Gallium arsenide (GaAs), valence bands, effective masses
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    Chapter 185 Gallium arsenide (GaAs), valence band parameters
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    Chapter 186 Gallium arsenide (GaAs), deformation potentials
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    Chapter 187 Gallium arsenide (GaAs), crystal structure, phases
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    Chapter 188 Gallium arsenide (GaAs), lattice parameter, thermal expansion
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    Chapter 189 Gallium arsenide (GaAs), phonon dispersion, phonon frequencies and wavenumbers
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    Chapter 190 Gallium arsenide (GaAs), sound velocities
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    Chapter 191 Gallium arsenide (GaAs), elastic moduli
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    Chapter 192 Gallium arsenide (GaAs), third order elastic moduli
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    Chapter 193 Gallium arsenide (GaAs), bulk, Young’s and torsion moduli, internal strain
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    Chapter 194 Gallium arsenide (GaAs), Grüneisen parameters, effective charge
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    Chapter 195 Gallium arsenide (GaAs), transport mechanisms
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    Chapter 196 Gallium arsenide (GaAs), intrinsic carrier concentration, electrical and thermal conductivity
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    Chapter 197 Gallium arsenide (GaAs), typical data for semi-insulating GaAs
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    Chapter 198 Gallium arsenide (GaAs), electron mobility
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    Chapter 199 Gallium arsenide (GaAs), electron drift velocity and diffusion coefficient
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    Chapter 200 Gallium arsenide (GaAs), hole mobility and drift velocity
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    Chapter 201 Gallium arsenide (GaAs), minority carrier transp., impact ioniz., carrier lifetimes, plasmon energy
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    Chapter 202 Gallium arsenide (GaAs), Hall scattering factor
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    Chapter 203 Gallium arsenide (GaAs), magnetoresistance
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    Chapter 204 Gallium arsenide (GaAs), piezoresistance tensor coefficients
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    Chapter 205 Gallium arsenide (GaAs), elastoresistance coefficients
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    Chapter 206 Gallium arsenide (GaAs), piezoelectric constants
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    Chapter 207 Gallium arsenide (GaAs), Seebeck coefficient
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    Chapter 208 Gallium arsenide (GaAs), Nernst coefficient
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    Chapter 209 Gallium arsenide (GaAs), optical constants
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    Chapter 210 Gallium arsenide (GaAs), refractive index, absorption index, absorption coefficients
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    Chapter 211 Gallium arsenide (GaAs), dielectric constants
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    Chapter 212 Gallium arsenide (GaAs), reflectance, two-photon absorption
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    Chapter 213 Gallium arsenide (GaAs), further optical spectra
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    Chapter 214 Gallium arsenide (GaAs), data from Raman spectra
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    Chapter 215 Gallium arsenide (GaAs), electron-two-phonon deformation potentials
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    Chapter 216 Gallium arsenide (GaAs), electrooptic constants, second and third order nonlinear susceptibilities
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    Chapter 217 Gallium arsenide (GaAs), Schottky barriers
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    Chapter 218 Gallium arsenide (GaAs), piezooptic constants, piezobirefringence
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    Chapter 219 Gallium arsenide (GaAs), absorption spectrum in the vacuum uv
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    Chapter 220 Gallium arsenide (GaAs), data from electron loss, yield and X-ray emission spectroscopy
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    Chapter 221 Gallium arsenide (GaAs), data from photoelectron spectroscopy (ESCA)
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    Chapter 222 Gallium arsenide (GaAs), core level binding energies, photoionization cross-sections
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    Chapter 223 Gallium arsenide (GaAs), photoemission data
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    Chapter 224 Gallium arsenide (GaAs), Auger effect
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    Chapter 225 Gallium arsenide (GaAs), magnetic properties
  226. Altmetric Badge
    Chapter 226 Gallium arsenide (GaAs), Debye temperature, density, heat capacity, melting point
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    Chapter 227 Gallium arsenide (GaAs), thermodynamical parameters, vaporization
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    Chapter 228 Gallium antimonide (GaSb), band structure, energies of symmetry points
  229. Altmetric Badge
    Chapter 229 Gallium antimonide (GaSb), direct energy gap
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    Chapter 230 Gallium antimonide (GaSb), exciton ground state
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    Chapter 231 Gallium antimonide (GaSb), critical point energies
  232. Altmetric Badge
    Chapter 232 Gallium antimonide (GaSb), higher conduction band minima, energy difference to lowest minimum
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    Chapter 233 Gallium antimonide (GaSb), spin-orbit splitting energies
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    Chapter 234 Gallium antimonide (GaSb), higher band-band transitions (critical point energies)
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    Chapter 235 Gallium antimonide (GaSb), conduction band splitting by strain
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    Chapter 236 Gallium antimonide (GaSb), data for the L and X conduction band minima
  237. Altmetric Badge
    Chapter 237 Gallium antimonide (GaSb), structure of conduction band minimum and valence band maximum
  238. Altmetric Badge
    Chapter 238 Gallium antimonide (GaSb), conduction band, effective masses
  239. Altmetric Badge
    Chapter 239 Gallium antimonide (GaSb), valence band, effective masses
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    Chapter 240 Gallium antimonide (GaSb), critical point effective mass, spin-orbit splitting valence band
  241. Altmetric Badge
    Chapter 241 Gallium antimonide (GaSb), valence band parameters
  242. Altmetric Badge
    Chapter 242 Gallium antimonide (GaSb), deformation potentials
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    Chapter 243 Gallium antimonide (GaSb), crystal structure, high-pressure phases
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    Chapter 244 Gallium antimonide (GaSb), lattice parameter, thermal expansion
  245. Altmetric Badge
    Chapter 245 Gallium antimonide (GaSb), phonon dispersion, phonon frequencies
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    Chapter 246 Gallium antimonide (GaSb), elastic moduli
  247. Altmetric Badge
    Chapter 247 Gallium antimonide (GaSb), third order elastic moduli
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    Chapter 248 Gallium antimonide (GaSb), bulk modulus
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    Chapter 249 Gallium antimonide (GaSb), mode Grüneisen parameters
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    Chapter 250 Gallium antimonide (GaSb), effective charge
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    Chapter 251 Gallium antimonide (GaSb), transport mechanisms
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    Chapter 252 Gallium antimonide (GaSb), intrinsic carrier concentration, resistivity
  253. Altmetric Badge
    Chapter 253 Gallium antimonide (GaSb), electron mobility
  254. Altmetric Badge
    Chapter 254 Gallium antimonide (GaSb), hole mobility
  255. Altmetric Badge
    Chapter 255 Gallium antimonide (GaSb), heavy and light hole mobilities
  256. Altmetric Badge
    Chapter 257 Gallium antimonide (GaSb), magnetoresistance
  257. Altmetric Badge
    Chapter 605 Silicon carbide (SiC), refractive index, absorption coefficient, optical spectra
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Title
Group IV Elements, IV-IV and III-V Compounds. Part b - Electronic, Transport, Optical and Other Properties
Published by
Springer, Berlin, Heidelberg, January 2002
DOI 10.1007/b80447
ISBNs
978-3-54-042876-3, 978-3-54-031356-4
Editors

O. Madelung, U. Rössler, M. Schulz

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The data shown below were compiled from readership statistics for 86 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Germany 1 1%
France 1 1%
Unknown 84 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 31 36%
Student > Master 14 16%
Researcher 9 10%
Student > Bachelor 8 9%
Student > Doctoral Student 4 5%
Other 8 9%
Unknown 12 14%
Readers by discipline Count As %
Physics and Astronomy 29 34%
Engineering 17 20%
Materials Science 11 13%
Chemistry 10 12%
Chemical Engineering 2 2%
Other 4 5%
Unknown 13 15%