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A split-flux model for phonon transport near hotspots
S. Sinha
, E. Pop
, K. E. Goodson
Research output
:
Contribution to conference
›
Paper
›
peer-review
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Keyphrases
Phonons
100%
Phonon Transport
100%
Flux Model
100%
Silicon Devices
20%
Nanometer Scale
20%
Device Geometry
20%
Electric Field (E-field)
20%
Bulk Silicon
20%
Phonon Modes
20%
Steady State
20%
Power Density
20%
Existing Data
20%
Temperature Rise
20%
Occupation number
20%
Relaxation Time Approximation
20%
Longitudinal Optical Phonons
20%
Semiconductor Devices
20%
Model Prediction
20%
Near-equilibrium
20%
Group Velocity
20%
Far-from-equilibrium
20%
Duty Cycle
20%
Transient State
20%
Electron-phonon Scattering
20%
Thermal Phonons
20%
Transport Equation
20%
Peak Electric Field
20%
Ballistic Phonon Transport
20%
Device Switching
20%
Departure Function
20%
Excess Temperature
20%
Engineering
Electric Field
100%
Transients
50%
Silicon Device
50%
Nanometre
50%
Bulk Silicon
50%
Power Density
50%
Optical Phonon
50%
Thermal Equilibrium
50%
Semiconductor Device
50%
Model Prediction
50%
Sufficient Time
50%
Group Velocity
50%
Temperature Rise
50%
Duty Cycle
50%
Excess Temperature
50%
Relaxation Time
50%
Material Science
Density
100%
Silicon
100%
Silicon Device
100%
Bulk Silicon
100%
Semiconductor Device
100%