Model for Lattice Thermal Conductivity at Low Temperatures
Explore this paper's citation graph
- Type
- article
- Published
- 1959-02-15
- Cited by
- 2,409
- References
- 0
- OpenAlex
- https://openalex.org/W2029741576
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:121212164
Keywords
Phonon, Thermal conductivity, Condensed matter physics, Physics, Scattering
References
No references recorded for this paper.
Cited by
- Phonon Engineering for Nanostructures
- Towards a microscopic understanding of phonon heat conduction
- Low-Temperature Heat Conduction in Pure, Monocrystalline Ice
- Phonon conductivity of InSb in the temperature range 2–800 K
- Transport thermique dans des membranes très minces de SiN amorphe
- émission Induite Dans les Semiconducteurs
- Magneto-transverse Phonon Transport
- Role of dispersion in the lattice thermal conductivity of Ge
- Elaboration de super-réseaux de boîtes quantiques à base de SiGe et développement de dispositifs pour l'étude de leurs propriétés thermoélectriques
- The correction term in a dislocation containing lattice
- Thermoelectric properties of conducting polymers
- Zwischengitterionen als wirksame störstellen in wärmeleitungsexperimenten an KCl- und KBr-einkristallen
- Thermal Convection in Non-Fourier Fluids and Application to Liquid Helium II
- Thermal Conductivity of Isotopically Modified Silicon: Current Status of Research1
- Analysis of Phonon Heat Conductivity of Semiconductors
- Numerical study of electro-thermal effects in silicon devices
- Sur la conductibilité thermique de monocristaux de germanium irradiés aux neutrons rapides
- Analyse de la conductibilité thermique du graphite. - II. théorie
- Lattice thermal conductivity of disordered binary alloys
- Prediction of Non-Equilibrium Heat Conduction in Crystalline Materials Using the Boltzmann Transport Equation for Phonons
Related papers
- Size Effects on Nanowire Phonon Thermal Conductivity: a Numerical Investigation Using the Boltzmann Equation
- Thermal conductivity of hollow nanowires
- Calculation of thermal conductivity of UO2±0.25 solving phonon Boltzmann equation
- Thermal transport properties of two-dimensional boron dichalcogenides from a first-principles and machine learning approach
- Monte-Carlo modeling of phonon thermal transport using DFT-based anisotropic dispersion relations over the full Brillouin zone
- Strain engineering of ZnO thermal conductivity
- Thermal resistance from non-equilibrium phonons at Si-Ge interface
- Effect of normal phonon-phonon scattering on the phonon relaxation time for metals
- Thermal conductivity of ceramics in the ZrO_2-GdO_1.5system