Dispersion Forces in a Nondegenerate Polaron Gas Dispersion Forces in a Nondegenerate Polaron Gas
نویسندگان
چکیده
Using the Feynman path integral method and a theory of polarizable fluids, I evaluate properties of nondegenerate Fröhlich polarons interacting in the strong coupling limit. At large enough densities and temperatures these properties are found to be mainly governed by the dispersion forces, i.e. attractive van-der-Waals interactions, which are no attributed to any permanent electric multipoles. Neglecting short-range correlations in the polaron gas, I have obtained an explicit expression for the dispersion contribution to the free energy of the system. The analysis of this contribution indicates that the dispersion effect is nonlinear and strongly cooperative at large enough densities of the polaron gas. The quasiparticles attract due to these forces leading to softening of the absorption peak, negativity of the dielectric function, and divergence of compressibility of the system. The main consequence of the dispersion forces is a quantum transition which results in a dielectric catastrophe considered as the onset of metallization. A possible excitonic phase consisting from quasiparticles with a nonzero dipole momentum is also examined. Comparing experimental data for metal-ammonia solutions, alkali-halide molten salts, and high-T c superconduct-ing cuprates, I find that dispersion forces may govern the behavior of self-trapped carries in these compounds.
منابع مشابه
A Spin-Polaron Technique Utilized on Triangular-Lattice Antiferromagnet
By expressing the Holstein-Primakoff transformation in a symmetric form a modified spin-polaron technique utilized on triangular-lattice antiferromagnet is developed. With the technique, we have treated an extended t-J model, calculated the quasiparticle dispersion, and we also compared the the dispersion with that obtained by other method. PACS: 74.20.-z, 71.27.+a, 75.30.Gw
متن کاملPhase diagram of the Holstein polaron in one dimension
The behavior of the 1D Holstein polaron is described, with emphasis on lattice coarsening effects, by distinguishing between adiabatic and nonadiabatic contributions to the local correlations and dispersion properties. The original and unifying systematization of the crossovers between the different polaron behaviors, usually considered in the literature, is obtained in terms of quantum to clas...
متن کاملSupplemental Material: “Polaron-to-polaron transitions in the radio-frequency spectrum of a quasi-two-dimensional Fermi gas”
In this supplemental material, we discuss the calculation of the radio-frequency spectra arising from confinement-induced dimers and polarons in a quasi-two-dimensional Fermi gas. We determine the dimer binding energies, including both the tight axial confinement and the nonzero transverse confinement. We provide the probabilities for dimer-to-dimer transitions and the shape of the dimerto-scat...
متن کاملDispersion of nondegenerate nonlinear refraction in semiconductors.
We use our recently developed beam-deflection technique to measure the dispersion of the nondegenerate nonlinear refraction (NLR) of direct-gap semiconductors. The magnitude and sign of the NLR coefficient n2(ωa; ωb) are determined over a broad spectral range for different values of nondegeneracy. In the extremely nondegenerate case, n2(ωa; ωb) is positively enhanced near ...
متن کاملOptical Absorption of an Interacting Many - Polaron Gas
The optical absorption of a many (continuum) polaron gas is derived in the framework of a variational approach at zero temperature and weak or intermediate electron-phonon coupling strength. We derive a compact formula for the optical conductivity of the many-polaron system taking into account many-body effects in the electron or hole system. Within the method presented here, these effects are ...
متن کامل