Residual entropy and waterlike anomalies in the repulsive one dimensional lattice gas

The thermodynamics and kinetics of the one dimensional lattice gas with repulsive interaction are investigated using transfer matrix technique and Monte Carlo simulations. This simple model is shown to exhibit waterlike anomalies in density, thermal expansion coefficient, and self-diffusion. An unif...

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Veröffentlicht in:The Journal of chemical physics 2015-04, Vol.142 (14), p.144506-144506
Hauptverfasser: da Silva, Fernando Barbosa V, Oliveira, Fernando Albuquerque, Barbosa, Marco Aurélio A
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container_title The Journal of chemical physics
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creator da Silva, Fernando Barbosa V
Oliveira, Fernando Albuquerque
Barbosa, Marco Aurélio A
description The thermodynamics and kinetics of the one dimensional lattice gas with repulsive interaction are investigated using transfer matrix technique and Monte Carlo simulations. This simple model is shown to exhibit waterlike anomalies in density, thermal expansion coefficient, and self-diffusion. An unified description for the thermodynamic anomalies in this model is achieved based on the ground state residual entropy which appears in the model due to mixing entropy in a ground state phase transition.
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subjects Anomalies
CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
Computer simulation
COMPUTERIZED SIMULATION
Diffusion
ENTROPY
Gases - chemistry
Ground state
GROUND STATES
Kinetics
MONTE CARLO METHOD
ONE-DIMENSIONAL CALCULATIONS
PHASE TRANSFORMATIONS
Phase transitions
SELF-DIFFUSION
Temperature
THERMAL EXPANSION
THERMODYNAMICS
Water - chemistry
title Residual entropy and waterlike anomalies in the repulsive one dimensional lattice gas
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