arXiv · 1901.10809
Properties of magnetized Coulomb crystals of ions with polarizable electron background
Abstract
We have studied phonon and thermodynamic properties of a body-centered cubic (bcc) Coulomb crystal of ions with weakly polarized electron background in a uniform magnetic field ${\bf B}$. At $B=0$ the difference between phonon moments calculated using the Thomas-Fermi (TF) and random phase (RPA) approximations is always less than one percent and for description of phonon properties of a crystal TF formalism was used. This formalism was successfully applied to investigate thermodynamic properties of magnetized Coulomb crystals. It was shown that the influence of the polarization of the electron background is significant only at $κ_{\rm TF}a > 0.1$ and $T \ll T_{\rm p}(1+h^2)^{-1/2}$, where $κ_{\rm TF}$ is the Thomas-Fermi wavenumber, $a$ is the ion sphere radius, $T_{\rm p}\equiv\hbar ω_{\rm p}$ is the ion plasma temperature, $h\equiv ω_B/ω_{\rm p}$, $ω_B$ is the ion cyclotron frequency and $ω_{\rm p}$ is the ion plasma frequency.
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A. A. Kozhberov. 2019-01-08. Properties of magnetized Coulomb crystals of ions with polarizable electron background. https://doi.org/10.1063/1.5031758
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