We illustrate how the Jarzynski equality (JE), which is the progenitor of non-equilibrium methods aimed at constructing free energy landscapes for molecular-sized fluctuating systems subjected to steered transformations, can be applied to derive equations of state for bulk systems. The key-step consists of physically framing the computational strategy of "total energy morphing'', recently presented by us as an efficient implementation of the JE [M. Zerbetto, A. Piserchia, D. Frezzato, J. Comput. Chem., 2014, 35, 1865-1881], in terms of build-up of the real thermodynamic state of a bulk material from the corresponding ideal state, in which the particles are non-interacting. In this context, the JE machinery yields the excess free energy vers...
The paper discusses how the two thermodynamic properties, energy (U) and exergy (E), can be used to ...
Jarzynski’s equality provides an elegant and powerful tool to directly compute differences in free e...
2014-01-29The fundamental laws of thermodynamics and statistical mechanics, and the deeper understan...
ArticleThis version: arXiv:1404.5181v1 [cond-mat.stat-mech]. Available from ArXiv.org via the link i...
PACS. 02.50.-r – Probability theory, stochastic processes, and statistics. PACS. 05.70.Ln – Nonequil...
The possibility of estimating equilibrium free-energy profiles from multiple non-equilibrium simulat...
The equilibrium free energy difference between two long-lived molecular species or "conformational s...
Thermodynamic integration, free energy perturbation, and slow change techniques have long been utili...
Measuring free energy differences between states is of fundamental importance to understanding and p...
As shown by Jarzynski, free energy differences between equilibrium states can be expressed in terms ...
Measuring free energy differences between states is of fundamental importance to understanding and p...
A promising method for calculating free energy differences Delta F is to generate non-equilibrium da...
International audienceIn this Introduction, we show the basic problems of non-statistical and non-eq...
Non-equilibrium thermodynamics, which serves as a framework for formulating evolution equations of m...
Fluctuation theorems (FTs), such as the Crooks or Jarzynski equalities (JEs), have become an importa...
The paper discusses how the two thermodynamic properties, energy (U) and exergy (E), can be used to ...
Jarzynski’s equality provides an elegant and powerful tool to directly compute differences in free e...
2014-01-29The fundamental laws of thermodynamics and statistical mechanics, and the deeper understan...
ArticleThis version: arXiv:1404.5181v1 [cond-mat.stat-mech]. Available from ArXiv.org via the link i...
PACS. 02.50.-r – Probability theory, stochastic processes, and statistics. PACS. 05.70.Ln – Nonequil...
The possibility of estimating equilibrium free-energy profiles from multiple non-equilibrium simulat...
The equilibrium free energy difference between two long-lived molecular species or "conformational s...
Thermodynamic integration, free energy perturbation, and slow change techniques have long been utili...
Measuring free energy differences between states is of fundamental importance to understanding and p...
As shown by Jarzynski, free energy differences between equilibrium states can be expressed in terms ...
Measuring free energy differences between states is of fundamental importance to understanding and p...
A promising method for calculating free energy differences Delta F is to generate non-equilibrium da...
International audienceIn this Introduction, we show the basic problems of non-statistical and non-eq...
Non-equilibrium thermodynamics, which serves as a framework for formulating evolution equations of m...
Fluctuation theorems (FTs), such as the Crooks or Jarzynski equalities (JEs), have become an importa...
The paper discusses how the two thermodynamic properties, energy (U) and exergy (E), can be used to ...
Jarzynski’s equality provides an elegant and powerful tool to directly compute differences in free e...
2014-01-29The fundamental laws of thermodynamics and statistical mechanics, and the deeper understan...