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Thermal transport in a silicon/diamond micro-flake with quantum dots inserts
Saad Bin Mansoor
*
,
Bekir Sami Yilbas
*
Corresponding author for this work
Department of Mechanical Engineering
Interdisciplinary Research Center for Sustainable Energy Systems
Research output
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Contribution to journal
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peer-review
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Weight
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Engineering
Diamond
100%
Quantum Dot
100%
Thermal Energy Transfer
40%
Temperature Decay
40%
Equilibrium Temperature
40%
Film Edge
40%
Film Silicon
40%
Integral Form
20%
Temperature Jump
20%
Energy Transport
20%
Effective Thermal Conductivity
20%
Interface Condition
20%
Radiative Phonon Transport
20%
Heat Flux Vector
20%
Semiconductor Device
20%
Midsection
20%
Nonequilibrium
20%
Film Material
20%
Thermoelectricity
20%
Thermal Energy
20%
Physics
Quantum Dot
100%
Transportation
100%
Phonon
100%
Silicon Films
60%
Energy Transfer
40%
Diamond Films
40%
Heat Sink
20%
Semiconductor Device
20%
Thermal Conductivity
20%
Thermoelectricity
20%
Material Science
Film
100%
Silicon
100%
Diamond
100%
Quantum Dot
100%
Diamond Films
22%
Discretization Method
11%
Thermoelectrics
11%
Thermal Conductivity
11%
Semiconductor Device
11%