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contributor authorZuckerman, Neil
contributor authorLukes, Jennifer R.
date accessioned2017-05-09T01:09:10Z
date available2017-05-09T01:09:10Z
date issued2014
identifier issn0022-1481
identifier otherht_136_01_012401.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/155175
description abstractA new kinetic Monte Carlo method for modeling phonon transport in quantum dot superlattices is presented. The method uses phonon scattering phase functions and cross sections to describe collisions between phonons and quantum dots. The phase functions and cross sections are generated using molecular dynamics simulation, which is capable of including atomistic effects otherwise unavailable in Monte Carlo approaches. The method is demonstrated for a test case featuring a SiGe quantum dot superlattice, and the model is compared against published experiments. It is found that molecular dynamicsderived cross sections must be weighted by diffuse mismatch modeltype weighting factors in order to satisfy detailed balance considerations. Additionally, it is found that thin alloy “base layerâ€‌ films strongly reduce thermal conductivity in these systems and must be included in the modeling to obtain agreement with published experimental data.
publisherThe American Society of Mechanical Engineers (ASME)
titleCombined Kinetic Monte Carlo—Molecular Dynamics Approach for Modeling Phonon Transport in Quantum Dot Superlattices
typeJournal Paper
journal volume136
journal issue1
journal titleJournal of Heat Transfer
identifier doi10.1115/1.4024909
journal fristpage12401
journal lastpage12401
identifier eissn1528-8943
treeJournal of Heat Transfer:;2014:;volume( 136 ):;issue: 001
contenttypeFulltext


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