Recent very large molecular dynamics simulations of homogeneous nucleation with (1 - 8) × 109 Lennard-Jones atoms [J. Diemand, R. Angélil, K. K. Tanaka, and H. Tanaka, J. Chem. Phys. 139, 074309 (2013)] allow us to accurately determine the formation free energy of clusters over a wide range of cluster sizes. This is now possible because such large simulations allow for very precise measurements of the cluster size distribution in the steady state nucleation regime. The peaks of the free energy curves give critical cluster sizes, which agree well with independent estimates based on the nucleation theorem. Using these results, we derive an analytical formula and a new scaling relation for nucleation rates: ln J'/η is scaled by ln S/η, where t...
By addressing the defects in classical nucleation theory (CNT), we develop an approach for extractin...
| openaire: EC/H2020/725513/EU//SuperRepelBy addressing the defects in classical nucleation theory (...
| openaire: EC/H2020/725513/EU//SuperRepelBy addressing the defects in classical nucleation theory (...
We have performed large-scale Lennard-Jones molecular dynamics simulations of homogeneous vapor-to-l...
The free energy barrier is fundamental to nucleation studies. Most of the existing literature interp...
The phase transition via homogeneous nucleation is a fundamental process and plays important roles i...
A formalism is presented for estimating critical cluster size as defined in classical models for nuc...
The intent of this work is to examine small cluster discrete size effects and their effect on the fr...
The intent of this work is to examine small cluster discrete size effects and their effect on the fr...
The formation free energy of clusters in a supersaturated vapor is obtained by a constrained Monte C...
The homogeneous nucleation rate, J, for T ≪ Tc can be cast into a corresponding states form by ...
The formation free energy of clusters in a supersaturated vapor is obtained by a constrained Monte C...
A better understanding of the limiting step in a first order phase transition, the nucleation proces...
Summarization: A statistical mechanical theory of homogeneous nucleation is developed based on a clu...
We predict the free energy of van der Waals clusters (Fn) in the surface-melted temperature regime. ...
By addressing the defects in classical nucleation theory (CNT), we develop an approach for extractin...
| openaire: EC/H2020/725513/EU//SuperRepelBy addressing the defects in classical nucleation theory (...
| openaire: EC/H2020/725513/EU//SuperRepelBy addressing the defects in classical nucleation theory (...
We have performed large-scale Lennard-Jones molecular dynamics simulations of homogeneous vapor-to-l...
The free energy barrier is fundamental to nucleation studies. Most of the existing literature interp...
The phase transition via homogeneous nucleation is a fundamental process and plays important roles i...
A formalism is presented for estimating critical cluster size as defined in classical models for nuc...
The intent of this work is to examine small cluster discrete size effects and their effect on the fr...
The intent of this work is to examine small cluster discrete size effects and their effect on the fr...
The formation free energy of clusters in a supersaturated vapor is obtained by a constrained Monte C...
The homogeneous nucleation rate, J, for T ≪ Tc can be cast into a corresponding states form by ...
The formation free energy of clusters in a supersaturated vapor is obtained by a constrained Monte C...
A better understanding of the limiting step in a first order phase transition, the nucleation proces...
Summarization: A statistical mechanical theory of homogeneous nucleation is developed based on a clu...
We predict the free energy of van der Waals clusters (Fn) in the surface-melted temperature regime. ...
By addressing the defects in classical nucleation theory (CNT), we develop an approach for extractin...
| openaire: EC/H2020/725513/EU//SuperRepelBy addressing the defects in classical nucleation theory (...
| openaire: EC/H2020/725513/EU//SuperRepelBy addressing the defects in classical nucleation theory (...