Numerical study of electro-thermal effects in silicon devices
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- Type
- dissertation
- Published
- 2013-01-25
- Cited by
- 3
- References
- 50
- OpenAlex
- https://openalex.org/W144553672
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:115555897
Keywords
Phonon, Boltzmann equation, Condensed matter physics, Materials science, Semiconductor
References
- Modelisation du transport sous contrainte mecanique dans les transistors sub-65 nm pour la Microelectronique CMOS. (Modelling of carrier transport under mechanical strain for sub-65 nm CMOS transistors)
- Modeling semiconductor nanostructures thermal properties: The dispersion role
- Etudes theoriques par simulation monte carlo 3d de la sensibilite aux irradiations des technologies cmos/soi
- Hot electrons in semiconductors : physics and devices
- High field transport in semiconductors
- Thermal nanosystems and nanomaterials
- Sub-continuum thermal simulations of deep sub-micron devices under ESD conditions
- Separation of hot-electron and self-heating effects in two-dimensional AlGaN/GaN-based conducting channels
- On Landauer versus Boltzmann and full band versus effective mass evaluation of thermoelectric transport coefficients
- Semiconducting and other major properties of gallium arsenide
- Anharmonic Decay of Optical Phonons
- Thermal conductance of thin silicon nanowires.
- Phonon scattering in silicon films with thickness of order 100 nm
- Lattice thermal conductivity of silicon from empirical interatomic potentials
- Adiabatic bond charge model for the phonons in diamond, Si, Ge, and α-Sn
- Diminished Short Channel Effects in Nanoscale Double-Gate Silicon-on-Insulator Metal–Oxide–Semiconductor Field-Effect-Transistors due to Induced Back-Gate Step Potential
- Phonon Scattering in Semiconductors From Thermal Conductivity Studies
- Reduction in the thermal conductivity of single crystalline silicon by phononic crystal patterning.
- Controllable spin-dependent transport in armchair graphene nanoribbon structures
- Thermal conductance of ballistic point contacts.
Cited by
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