
Since the grand partition function Zq for the so-called q-particles (i.e., quons), q∈(−1,1), cannot be computed by using the standard 2nd quantisation technique involving the full Fock space construction for q=0, and its q-deformations for the remaining cases, we determine such grand partition functions in order to obtain the natural generalisation of the Plank distribution to q∈[−1,1]. We also note the (non) surprising fact that the right grand partition function concerning the Boltzmann case (i.e., q=0) can be easily obtained by using the full Fock space 2nd quantisation, by considering the appropriate correction by the Gibbs factor 1/n! in the n term of the power series expansion with respect to the fugacity z. As an application, we briefly discuss the equations of the state for a gas of free quons or the condensation phenomenon into the ground state, also occurring for the Bose-like quons q∈(0,1).
Science, QC1-999, FOS: Physical sciences, Astrophysics, Grand canonical ensemble, Article, Bose Einstein Condensation, grand partition function, thermodynamics of <i>q</i>-particles, Quons, Mathematical Physics, Physics, Thermodynamics of q-particles, Q, Mathematical Physics (math-ph), Settore MAT/05 - ANALISI MATEMATICA, thermodynamics of <i>q</i>-particles; quons; grand canonical ensemble; grand partition function; Bose Einstein Condensation, QB460-466, quons, grand canonical ensemble, Settore MAT/07 - FISICA MATEMATICA, Grand partition func-tion
Science, QC1-999, FOS: Physical sciences, Astrophysics, Grand canonical ensemble, Article, Bose Einstein Condensation, grand partition function, thermodynamics of <i>q</i>-particles, Quons, Mathematical Physics, Physics, Thermodynamics of q-particles, Q, Mathematical Physics (math-ph), Settore MAT/05 - ANALISI MATEMATICA, thermodynamics of <i>q</i>-particles; quons; grand canonical ensemble; grand partition function; Bose Einstein Condensation, QB460-466, quons, grand canonical ensemble, Settore MAT/07 - FISICA MATEMATICA, Grand partition func-tion
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