Literature DB >> 33671461

Entropy Pair Functional Theory: Direct Entropy Evaluation Spanning Phase Transitions.

Donald M Nicholson1, C Y Gao2, Marshall T McDonnell2, Clifton C Sluss3, David J Keffer3.   

Abstract

We prove that, within the class of pair potential Hamiltonians, the excess entropy is a universal, temperature-independent functional of the density and pair correlation function. This result extends Henderson's theorem, which states that the free energy is a temperature dependent functional of the density and pair correlation. The stationarity and concavity of the excess entropy functional are discussed and related to the Gibbs-Bugoliubov inequality and to the free energy. We apply the Kirkwood approximation, which is commonly used for fluids, to both fluids and solids. Approximate excess entropy functionals are developed and compared to results from thermodynamic integration. The pair functional approach gives the absolute entropy and free energy based on simulation output at a single temperature without thermodynamic integration. We argue that a functional of the type, which is strictly applicable to pair potentials, is also suitable for first principles calculation of free energies from Born-Oppenheimer molecular dynamics performed at a single temperature. This advancement has the potential to reduce the evaluation the free energy to a simple modification to any procedure that evaluates the energy and the pair correlation function.

Entities:  

Keywords:  entropy; entropy functional; free energy; pair correlation function; pair distribution function

Year:  2021        PMID: 33671461     DOI: 10.3390/e23020234

Source DB:  PubMed          Journal:  Entropy (Basel)        ISSN: 1099-4300            Impact factor:   2.524


  2 in total

1.  Vibrational Entropy of Crystalline Solids from Covariance of Atomic Displacements.

Authors:  Yang Huang; Michael Widom
Journal:  Entropy (Basel)       Date:  2022-04-28       Impact factor: 2.738

2.  Exploration of Entropy Pair Functional Theory.

Authors:  Clifton C Sluss; Jace Pittman; Donald M Nicholson; David J Keffer
Journal:  Entropy (Basel)       Date:  2022-04-26       Impact factor: 2.738

  2 in total

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