3A particularly simple relation of proportionality between internal energy and pressure holds for scale-invariant thermodynamic systems (with Hamiltonians homogeneous functions of the coordinates), including classical and quantum – Bose and Fermi – ideal gases. One can quantify the deviation from such a relation by introducing the internal energy shift as the difference between the internal energy of the system and the corresponding value for scale-invariant (including ideal) gases. After discussing some general thermodynamic properties associated with the scale-invariance, we provide criteria for which the internal energy shift density of an imperfect (classical or quantum) gas is a bounded function of temperature. We then study the intern...
We investigate the strongly interacting hard-core anyon gases in a one dimensional harmonic potentia...
We show that the chemical potential of a one-dimensional (1D) interacting Bose gas exhibits a nonmon...
We prove a lower bound for the free energy (per unit volume) of the two-dimensional Bose gas in the ...
A particularly simple relation of proportionality between internal energy and pressure holds for sca...
A particularly simple relation of proportionality between internal energy and pressure holds for sca...
3We study the thermodynamical properties of an ideal gas of non-Abelian Chern-Simons particles and w...
In the classical case, the hydrostatic pressure of an ideal gas is defined as being two-thirds of th...
ln this paper, next subject is discussed, §32. The equation of state of an ideal gas. Here we consid...
The equations of state for an ideal relativistic, or generalized, gas, like an ideal quantum gas, ar...
National Natural Science Foundation, China [10875100]Based on the grand potentials of ideal quantum ...
The formalism of Glassgold, Heckrotte, and Watson for the expansion of the quantum-mechanical grand ...
We discuss thermodynamic properties of harmonically trapped imperfect quantum gases. The spatial inh...
A full and consecutive analysis of the dynamic and thermodynamic properties of an ideal gas of relat...
The effects of low dimensionality on the thermodynamics of a Fermi gas trapped by isotropic power-la...
A novel formalism of quantum statistical mechanics, based on the zero-temperature S-matrix of the qu...
We investigate the strongly interacting hard-core anyon gases in a one dimensional harmonic potentia...
We show that the chemical potential of a one-dimensional (1D) interacting Bose gas exhibits a nonmon...
We prove a lower bound for the free energy (per unit volume) of the two-dimensional Bose gas in the ...
A particularly simple relation of proportionality between internal energy and pressure holds for sca...
A particularly simple relation of proportionality between internal energy and pressure holds for sca...
3We study the thermodynamical properties of an ideal gas of non-Abelian Chern-Simons particles and w...
In the classical case, the hydrostatic pressure of an ideal gas is defined as being two-thirds of th...
ln this paper, next subject is discussed, §32. The equation of state of an ideal gas. Here we consid...
The equations of state for an ideal relativistic, or generalized, gas, like an ideal quantum gas, ar...
National Natural Science Foundation, China [10875100]Based on the grand potentials of ideal quantum ...
The formalism of Glassgold, Heckrotte, and Watson for the expansion of the quantum-mechanical grand ...
We discuss thermodynamic properties of harmonically trapped imperfect quantum gases. The spatial inh...
A full and consecutive analysis of the dynamic and thermodynamic properties of an ideal gas of relat...
The effects of low dimensionality on the thermodynamics of a Fermi gas trapped by isotropic power-la...
A novel formalism of quantum statistical mechanics, based on the zero-temperature S-matrix of the qu...
We investigate the strongly interacting hard-core anyon gases in a one dimensional harmonic potentia...
We show that the chemical potential of a one-dimensional (1D) interacting Bose gas exhibits a nonmon...
We prove a lower bound for the free energy (per unit volume) of the two-dimensional Bose gas in the ...