Electron–phonon interaction and electronic thermal conductivity have been investigated in heavily doped silicon at subKelvin temperatures. The heat flow between electron and phonon systems is found to be proportional to T6. Utilization of a superconductor–semiconductor–superconductor thermometer enables a precise measurement of electron and substrate temperatures. The electronic thermal conductivity is consistent with the Wiedemann–Franz law
The electron-phonon interaction is well known to create major resistance to electron transport in me...
We present measurements of thermal and electrical conductivity of polycrystalline permalloy (Ni-Fe),...
Scatterings of electrons by ionized impurities in semiconductors have been comprehensively explored ...
Electron–phonon interaction and electronic thermal conductivity have been investigated in heavily do...
The influence of carrier concentration in silicon-on-insulator film on the thermal characteristics o...
The thermal conductance between electrons and phonons in a solid state system becomes comparatively ...
Electron–phonon interaction and electronic thermal conductivity have been investigated in heavily do...
Energy flow rate in degenerate n-type silicon-on-insulator (SOI) film is studied at low temperatures...
Experimental values are given of the thermal conductivity and thermoelectric power of n-type silicon...
The question of what fraction of the total heat flow is transported by phonons with different mean-f...
Although thermal transport in silicon is dominated by phonons in the solid state, electrons also par...
© 2020, The Author(s). As a foundational concept in many-body physics, electron–phonon interaction i...
Cooling of electrons in a heavily doped silicon by quasiparticle tunneling using a superconductor–se...
The thermal conductivity of free-standing silicon nanowires (SiNWs) with diameters from 1-3 nm has b...
We have measured the thermal conductivity of several superconducting films. These films were evapora...
The electron-phonon interaction is well known to create major resistance to electron transport in me...
We present measurements of thermal and electrical conductivity of polycrystalline permalloy (Ni-Fe),...
Scatterings of electrons by ionized impurities in semiconductors have been comprehensively explored ...
Electron–phonon interaction and electronic thermal conductivity have been investigated in heavily do...
The influence of carrier concentration in silicon-on-insulator film on the thermal characteristics o...
The thermal conductance between electrons and phonons in a solid state system becomes comparatively ...
Electron–phonon interaction and electronic thermal conductivity have been investigated in heavily do...
Energy flow rate in degenerate n-type silicon-on-insulator (SOI) film is studied at low temperatures...
Experimental values are given of the thermal conductivity and thermoelectric power of n-type silicon...
The question of what fraction of the total heat flow is transported by phonons with different mean-f...
Although thermal transport in silicon is dominated by phonons in the solid state, electrons also par...
© 2020, The Author(s). As a foundational concept in many-body physics, electron–phonon interaction i...
Cooling of electrons in a heavily doped silicon by quasiparticle tunneling using a superconductor–se...
The thermal conductivity of free-standing silicon nanowires (SiNWs) with diameters from 1-3 nm has b...
We have measured the thermal conductivity of several superconducting films. These films were evapora...
The electron-phonon interaction is well known to create major resistance to electron transport in me...
We present measurements of thermal and electrical conductivity of polycrystalline permalloy (Ni-Fe),...
Scatterings of electrons by ionized impurities in semiconductors have been comprehensively explored ...