Density Function Thermal Scaling and Physical Significance of Shape

Journal Title: Physical Science & Biophysics Journal - Year 2017, Vol 1, Issue 1

Abstract

The solid-state concept of thermal voltage is used to define a homothetic scaling of the quantum mechanical one-particle reduced density function. This scaling might be used to construct a temperature dependent quantum density. Once defined such scaling, named here as thermal scaling, it is simple to use it with a precise temperature, adapting such scaling matching the associated shape function. The temperature achieving this equality is termed Shape Temperature TS and, if N is the number of particles of a given quantum object, one can demonstrate that the simple equality: 12 T N S  holds. Furthermore, Shape Temperature can be associated to a characteristic Shape Frequency max  S , via Wien’s law, which yields equality: max 0.7 ,  S  N THz linking number of particles with frequency.

Authors and Affiliations

Carbó-Dorca R*

Keywords

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  • EP ID EP746250
  • DOI -
  • Views 19
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How To Cite

Carbó-Dorca R* (2017). Density Function Thermal Scaling and Physical Significance of Shape. Physical Science & Biophysics Journal, 1(1), -. https://europub.co.uk/articles/-A-746250