Two-dimensional electron crystal in magnetic field. Topological phase transitions and stability region. |
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Authors: | Yu.E. Lozovik S.M. Apenko A.V. Klyuchnik |
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Affiliation: | Institute of Spectroscopy, 142092, Moscow obl., Troitsk, USSR |
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Abstract: | The phase diagram of a 2-dim. electron system in the magnetic field is analyzed. We obtain ab initio the free energy F{Uiκ} of a deformed electron crystal when the long-range Coulomb forces and are taken into account. Using F{uiκ} we find H-dependent interaction between the dislocations and the curve of the topological melting due to the dissociation of dislocation pairs. The topological melting curve for H → ∞ asimptotically approaches to the melting curve of a classical crystal. This result is obtained using Feynman variational technique as well. We examine also the electron liquid crystal phase and the stability region of a 2-dim. crystal at ≠ 0. The first-order phase transitions from the crystal and liquid crystal to the isotropic liquid are predicted to take place in a definite region of the phase diagram. We find the increase of the crystal and liquid crystal region on the T-n phase diagram with H increase. The various phenomenological stability criteria are ånaylzed. |
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