Motivated by the fact that the (inverse) temperature might be a function of the energy levels in the Planck distribution for the occupation number of the level , we show that it can be naturally achieved by imposing the constraint concerning the conservation of a weighted sum , with a fixed positive weight function , of the contributions of the single energy levels occupation in the Microcanonical Ensemble scheme, obtaining . This immediately addresses the possibility that also a weighted sum of the particles occupation number is conserved, having as a consequence that the chemical potential might be a function of the energy levels of the system as well. This scheme leads to a thermodynamics of open systems in the following way: the equilibrium is reached when the entropy function is maximised under the constraints that some weighed sums of occupation of the energy levels and the occupation numbers are conserved. The standard case of isolated systems corresponds to the weight functions being trivial (i.e. are identically 1). For such open systems, new and unexpected phenomena which might happen in nature can appear, like the Bose–Einstein Condensation in excited levels. The ideas outlined in the present paper may provide a new approach for the treatment of the irreversible thermodynamics.

Fidaleo, F., Viaggiu, S. (2017). A proposal for the thermodynamics of certain open systems. PHYSICA. A, 468, 677-690 [10.1016/j.physa.2016.10.058].

A proposal for the thermodynamics of certain open systems

Fidaleo Francesco;Viaggiu Stefano
2017-01-01

Abstract

Motivated by the fact that the (inverse) temperature might be a function of the energy levels in the Planck distribution for the occupation number of the level , we show that it can be naturally achieved by imposing the constraint concerning the conservation of a weighted sum , with a fixed positive weight function , of the contributions of the single energy levels occupation in the Microcanonical Ensemble scheme, obtaining . This immediately addresses the possibility that also a weighted sum of the particles occupation number is conserved, having as a consequence that the chemical potential might be a function of the energy levels of the system as well. This scheme leads to a thermodynamics of open systems in the following way: the equilibrium is reached when the entropy function is maximised under the constraints that some weighed sums of occupation of the energy levels and the occupation numbers are conserved. The standard case of isolated systems corresponds to the weight functions being trivial (i.e. are identically 1). For such open systems, new and unexpected phenomena which might happen in nature can appear, like the Bose–Einstein Condensation in excited levels. The ideas outlined in the present paper may provide a new approach for the treatment of the irreversible thermodynamics.
2017
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore MAT/07 - FISICA MATEMATICA
English
Thermodynamics of open systems; Microcanonical ensemble; EntropyEquilibrium and non-equilibrium thermodynamics; Irreversible thermodynamics; Non-equilibrium steady states; Bose–Einstein Condensation
Fidaleo, F., Viaggiu, S. (2017). A proposal for the thermodynamics of certain open systems. PHYSICA. A, 468, 677-690 [10.1016/j.physa.2016.10.058].
Fidaleo, F; Viaggiu, S
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/205978
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