Neuromorphic computing systems may be the future of computing and cluster-based networks are a promising architecture for the realization of these systems. The creation and dissolution of synapses between the clusters are of great importance for their function. In this work, we model the thermal breakage of a gold nanofilament located between two gold nanoparticles via molecular dynamics simulations to study on the mechanisms of neuromorphic nanoparticle-based devices. We employ simulations of Au nanowires of different lengths (20–80 Å), widths (4–8 Å) and shapes connecting two Au1415 nanoparticles (NPs) and monitor the evolution of the system via a detailed structural identification analysis. We found that atoms of the nanofilament gradual...
Copper and gold nanowires under tension evolve to form linear atomic chains (LACs), and the study an...
A set of molten gold clusters, each with 1157 gold atoms, was studied by molecular dynamics simulati...
Gold nanoclusters have been shown to be a most promising nanomaterial with a wide range of potential...
Neuromorphic computing systems may be the future of computing and cluster-based networks are a promi...
Atomic cluster-based networks represent a promising architecture for the realization of neuromorphic...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
We perform a large-scale statistical analysis (>2000 independent simulations) of the elongation and ...
Gold nanoclusters in the size range of 3-8 nm in diameter (923-10179) atoms were studied using the e...
The crystallization dynamics of 5083 atom gold nanoclusters, which were quenched from the melt, were...
During the last two decades, the study of the properties of nanowires has been one of the keystones ...
We report comprehensive high-accuracy molecular dynamics simulations using the ReaxFF forcefield to ...
2013-02-07This dissertation is focused on multimillion-atom molecular dynamics (MD) simulations of n...
Molecular dynamics simulation of the crystallization behavior of a liquid gold (Au) nanoparticle, ab...
In this work we study, by means of molecular dynamics simulation, the change in the mechanical prope...
The melting process of nickel nanowires are simulated by using molecular dynamics with the quantum S...
Copper and gold nanowires under tension evolve to form linear atomic chains (LACs), and the study an...
A set of molten gold clusters, each with 1157 gold atoms, was studied by molecular dynamics simulati...
Gold nanoclusters have been shown to be a most promising nanomaterial with a wide range of potential...
Neuromorphic computing systems may be the future of computing and cluster-based networks are a promi...
Atomic cluster-based networks represent a promising architecture for the realization of neuromorphic...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
We perform a large-scale statistical analysis (>2000 independent simulations) of the elongation and ...
Gold nanoclusters in the size range of 3-8 nm in diameter (923-10179) atoms were studied using the e...
The crystallization dynamics of 5083 atom gold nanoclusters, which were quenched from the melt, were...
During the last two decades, the study of the properties of nanowires has been one of the keystones ...
We report comprehensive high-accuracy molecular dynamics simulations using the ReaxFF forcefield to ...
2013-02-07This dissertation is focused on multimillion-atom molecular dynamics (MD) simulations of n...
Molecular dynamics simulation of the crystallization behavior of a liquid gold (Au) nanoparticle, ab...
In this work we study, by means of molecular dynamics simulation, the change in the mechanical prope...
The melting process of nickel nanowires are simulated by using molecular dynamics with the quantum S...
Copper and gold nanowires under tension evolve to form linear atomic chains (LACs), and the study an...
A set of molten gold clusters, each with 1157 gold atoms, was studied by molecular dynamics simulati...
Gold nanoclusters have been shown to be a most promising nanomaterial with a wide range of potential...