The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are predicted from the length dependence of the spectrally decomposed heat current (SDHC) obtained from non-equilibrium molecular dynamics simulations. The results suggest a (frequency)− 2 scaling of the room-temperature MFPs below 5 THz. The MFPs exhibit a local maximum at a frequency of 8 THz and fall below 1 nm at frequencies greater than 10 THz, indicating localized vibrations. The MFPs extracted from sub-10 nm system-size simulations are used to predict the length-dependence of thermal conductivity up to system sizes of 100 nm and good agreement is found with independent molecular dynamics simulations. Weighting the SDHC by the frequency-de...
ABSTRACT We compute the lattice thermal conductivity (κ) of silicon nanowires as a function of tempe...
We predict the bulk thermal conductivity of Lennard-Jones argon and Stillinger-Weber silicon using t...
Nonequilibrium molecular dynamics simulation has been a powerful tool for studying the thermophysica...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
Amorphous silicon (a-Si) is an important thermal-management material and also serves as an ideal pla...
<p>We predict the properties of the propagating and nonpropagating vibrational modes in amorphous si...
Supplementary files for article Quantum-corrected thickness-dependent thermal conductivity in amorph...
Although the thermal conductivity of silicon has been studied before, current estimations for the ph...
Topological disorder provides tremendous opportunities to design and manipulate solid materials due ...
Although thermal transport in silicon is dominated by phonons in the solid state, electrons also par...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
Size effects in heat conduction, which occur when phonon mean free paths (MFPs) are comparable to ch...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
ABSTRACT We compute the lattice thermal conductivity (κ) of silicon nanowires as a function of tempe...
We predict the bulk thermal conductivity of Lennard-Jones argon and Stillinger-Weber silicon using t...
Nonequilibrium molecular dynamics simulation has been a powerful tool for studying the thermophysica...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
Amorphous silicon (a-Si) is an important thermal-management material and also serves as an ideal pla...
<p>We predict the properties of the propagating and nonpropagating vibrational modes in amorphous si...
Supplementary files for article Quantum-corrected thickness-dependent thermal conductivity in amorph...
Although the thermal conductivity of silicon has been studied before, current estimations for the ph...
Topological disorder provides tremendous opportunities to design and manipulate solid materials due ...
Although thermal transport in silicon is dominated by phonons in the solid state, electrons also par...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
Size effects in heat conduction, which occur when phonon mean free paths (MFPs) are comparable to ch...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
ABSTRACT We compute the lattice thermal conductivity (κ) of silicon nanowires as a function of tempe...
We predict the bulk thermal conductivity of Lennard-Jones argon and Stillinger-Weber silicon using t...
Nonequilibrium molecular dynamics simulation has been a powerful tool for studying the thermophysica...