Mechanical Energy Flow in Crystal Lattices
- 6 April 1964
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 134 (1A) , A158-A162
- https://doi.org/10.1103/physrev.134.a158
Abstract
A detailed study of the mechanical energy transported through a completely general crystal lattice in the classical temperature range is presented. Both a mechanical "Poynting" vector and the corresponding mechanical "Poynting" theorem are established for an arbitrary, 3-dimensional, anisotropic, anharmonic crystal lattice, containing many atoms per cell, inclusive of substitutional impurities, and possessing an arbitrary range of atomic interactions. The extension of the energy-flow procedures to a quantum treatment is discussed, and the resulting quantum-mechanical form of the mechanical "Poynting" vector is given. In addition, a mechanical energy theorem, linking the average mechanical energy flow to the group velocity for the restricted case of a perfectly periodic and harmonic but otherwise completely general, crystal is derived for the classical temperature range.Keywords
This publication has 3 references indexed in Scilit:
- Attenuating Wave Analysis of Heat Flow in Crystal LatticesPhysical Review B, 1964
- Energy-Flux Operator for a LatticePhysical Review B, 1963
- Thermal Conductivity and Lattice Vibrational ModesPublished by Elsevier ,1958