Supplementary files for article Quantum-corrected thickness-dependent thermal conductivity in amorphous silicon redicted by machine learning molecular dynamics simulations Amorphous silicon (a-Si) is an important thermal-management material and also serves as an ideal playground for studying heat transport in strongly disordered materials. Theoretical prediction of the thermal conductivity of a-Si in a wide range of temperatures and sample sizes is still a challenge. Herein we present a systematic investigation of the thermal transport properties of a-Si by employing large-scale molecular dynamics (MD) simulations with an accurate and efficient machine learned neuroevolution potential (NEP) trained against abundant reference data calculate...
This study establishes that the effective thermal conductivity k eff of crystalline nanopo...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
Amorphous silicon (a-Si) is an important thermal-management material and also serves as an ideal pla...
This is the data set for the preprint arXiv:2206.07605 [cond-mat.mtrl-sci], obtained by the GPUMD co...
Topological disorder provides tremendous opportunities to design and manipulate solid materials due ...
First principles-based modeling on phonon dynamics and transport using density functional theory and...
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...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
Nonequilibrium molecular dynamics simulation has been a powerful tool for studying the thermophysica...
In today’s nanotechnology, a critical issue is to gain the ability to control the structure and func...
<p>We predict the properties of the propagating and nonpropagating vibrational modes in amorphous si...
We predict the bulk thermal conductivity of Lennard-Jones argon and Stillinger-Weber silicon using t...
Abstract The structural features and thermal conductivity of silicon nanoparticles of diameter 2-12 ...
This study establishes that the effective thermal conductivity k eff of crystalline nanopo...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
Amorphous silicon (a-Si) is an important thermal-management material and also serves as an ideal pla...
This is the data set for the preprint arXiv:2206.07605 [cond-mat.mtrl-sci], obtained by the GPUMD co...
Topological disorder provides tremendous opportunities to design and manipulate solid materials due ...
First principles-based modeling on phonon dynamics and transport using density functional theory and...
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...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
Nonequilibrium molecular dynamics simulation has been a powerful tool for studying the thermophysica...
In today’s nanotechnology, a critical issue is to gain the ability to control the structure and func...
<p>We predict the properties of the propagating and nonpropagating vibrational modes in amorphous si...
We predict the bulk thermal conductivity of Lennard-Jones argon and Stillinger-Weber silicon using t...
Abstract The structural features and thermal conductivity of silicon nanoparticles of diameter 2-12 ...
This study establishes that the effective thermal conductivity k eff of crystalline nanopo...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...