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arXiv:0805.2582 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Variational Monte-Carlo calculation of the nematic state of the two-dimensional electron gas in a magnetic field

Quoc M. Doan, Efstratios Manousakis

Published 2008-05-16Version 1

We use a Jastrow-Slater wave function with an elliptical Fermi sea to describe the nematic state of the two-dimensional electron gas in a magnetic field and the Monte Carlo method to calculate a variational energy upper bound. These energy upper bounds are compared with other upper bounds describing stripe-ordered ground states which are obtained from optimized Hartree-Fock calculations and with those which correspond to an isotropic ground state. Our findings support the conclusions drawn in our previous study where the Fermi-hypernetted chain approximation was used instead of the Monte Carlo method. Namely, the nematic state becomes energetically favorable relative to the stripe-ordered Wigner crystal phase for the second excited Landau level and below a critical value of the layer ``thickness'' parameter which is very close to its value in the actual materials.

Comments: 6 pages, 8 figures
Journal: Phys. Rev. B 78, 075314 (2008)
Categories: cond-mat.mes-hall
Subjects: 73.43.Cd, 73.43.Lp
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