Introduction to Solid State PhysicsNew edition of the most widely-used textbook on solid state physics in the world. Describes how the excitations and imperfections of actual solids can be understood with simple models that have firmly established scope and power. The foundation of this book is based on experiment, application and theory. Several significant advances in the field have been added including high temperature superconductors, quasicrystals, nanostructures, superlattices, Bloch/Wannier levels, Zener tunneling, light-emitting diodes and new magnetic materials. |
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Page 4
... lattice . A lattice is a regular periodic array of points in space . ( The analog in two dimensions is called a net , as in Chapter 18. ) A lattice is a mathematical abstrac- tion ; the crystal structure is formed when a basis of atoms ...
... lattice . A lattice is a regular periodic array of points in space . ( The analog in two dimensions is called a net , as in Chapter 18. ) A lattice is a mathematical abstrac- tion ; the crystal structure is formed when a basis of atoms ...
Page 5
... structure is formed by adding a basis to every lattice point . The lattice is indi- cated by dots in Figs . 2 and 3 , but in Fig . 4c the dots are omitted . ( a ) Space lattice ( b ) Basis , 1 Crystal Structure 5 Basis and the crystal ...
... structure is formed by adding a basis to every lattice point . The lattice is indi- cated by dots in Figs . 2 and 3 , but in Fig . 4c the dots are omitted . ( a ) Space lattice ( b ) Basis , 1 Crystal Structure 5 Basis and the crystal ...
Page 33
... crystal . Reciprocal Lattice Vectors To proceed further with the Fourier analysis of the electron concentration we must find the vectors G of the Fourier sum Enç exp ( iG · r ) as in ( 9 ) . There is a ... Lattice 333 CRYSTAL STRUCTURE.
... crystal . Reciprocal Lattice Vectors To proceed further with the Fourier analysis of the electron concentration we must find the vectors G of the Fourier sum Enç exp ( iG · r ) as in ( 9 ) . There is a ... Lattice 333 CRYSTAL STRUCTURE.
Contents
PERIODIC ARRAYS OF ATOMS | 3 |
1 | 10 |
INDEX SYSTEM FOR CRYSTAL PLANES | 12 |
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a₁ absolute zero alloys approximation atoms axis band edge Bloch Brillouin zone Chapter charge collision components conduction band conduction electrons crystal structure defined density dielectric diffraction dimensions direction dislocation dispersion relation displacement effective mass elastic electric field electron concentration electron gas energy gap equation equilibrium exciton factor Fermi level Fermi surface ferromagnetic Figure flux Fourier free electron frequency function germanium heat capacity hole impurity integral interaction ionic ions lattice constant lattice point layer low temperatures magnetic field magnetic moment metals modes momentum motion nearest-neighbor neutron normal optical orbital oscillator particle phase phonon plane polarization potential energy primitive cell quantum reciprocal lattice vector resonance result scattering semiconductor shown in Fig silicon solution space specimen sphere spin superconducting Table theory thermal tion transition unit valence band values velocity voltage volume wave wavefunction wavelength wavevector x-ray zone boundary