Interpolation between linearized and atomistic models for accurate calculation of the lattice thermal conductivity in the full temperature range -

dc.contributor.authorAbou Khalil, Ali Mohammad
dc.contributor.departmentDepartment of Physics
dc.contributor.facultyFaculty of Arts and Sciences
dc.contributor.institutionAmerican University of Beirut
dc.date2013
dc.date.accessioned2015-02-03T10:46:47Z
dc.date.available2015-02-03T10:46:47Z
dc.date.issued2013
dc.date.submitted2013
dc.descriptionThesis (M.S.)-- American University of Beirut, Department of Physics, 2013.
dc.descriptionAdvisor : Dr. Michael Kazan, Assistant Professor, Physics ; Committee Members : Dr. Malek Tabbal, Professor, Physics ; Dr. Leonid Klushin, Professor, Physics.
dc.descriptionIncludes bibliographical references (leaves 60-62)
dc.description.abstractIn this thesis, we developed a model for the lattice thermal conductivity (κ). For the calculation of κ for a single crystal over a full temperature range, the model uses the full Callaway's solution to Boltzmann equation that discriminates between the physical nature of the various phonon mechanisms. However, it uses temperature-dependent lattice vibration parameters, phonon group velocity calculated from a dynamical matrix, and intrinsic phonon relaxation time calculated from Fermi's golden rule. With these modifications, the developed model accounts for the dependence of κ on the crystallographic direction over a wide temperature range. For the calculation of the effect of phonon boundary scattering, the model uses the relationship established by Casimir. This relation considers a diffuse scattering, i.e., it ignores the dependence of the wave vector on the phonon-boundary scattering. The model considers the localized mass fluctuation as a perturbation Hamiltonian to account for the effect of point defect on κ. The developed model is applied to calculate the effects of crystallographic orientation and isotope composition on κ of Ge. A satisfactory agreement is obtained between theory and experiment.
dc.format.extentviii, 62 leaves : illustrations ; 30 cm
dc.identifier.otherb17917323
dc.identifier.urihttp://hdl.handle.net/10938/9893
dc.language.isoen
dc.relation.ispartofTheses, Dissertations, and Projects
dc.subject.classificationT:005938 AUBNO
dc.subject.lcshInterpolation.
dc.subject.lcshLattice dynamics.
dc.subject.lcshHeat -- Conduction.
dc.subject.lcshSemiconductors -- Thermal properties.
dc.subject.lcshThermal conductivity.
dc.subject.lcshPhonons.
dc.subject.lcshVibration.
dc.titleInterpolation between linearized and atomistic models for accurate calculation of the lattice thermal conductivity in the full temperature range -
dc.typeThesis

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