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Thermodynamics of the Double-Layer Quantum Hall Systems

Strongly Correlated Electrons 2009-11-07 v2

Abstract

In this paper we apply the exact solution of the sine-Gordon model to describe thermodynamic properties of the soliton liquid in the incommensurate phase of the double-layer quantum Hall systems. In this way we include thermal fluctuations and extend to finite temperatures the results obtained by C.B. Hanna, A.H. MacDonald and S.M. Girvin [Phys. Rev. B {\bf 63}, 125305 (2001)]. In addition we calculate the specific heat of the system. While the results obtained for the sine-Gordon model are available in a temperature interval (0,Tc)(0,T_c), where Tc=8πρsT_c=8\pi \rho_s, ρs\rho_s the pseudospin stiffness, they can be applied in the bilayer system up to temperatures 3TBKT3T_{\rm BKT}, where TBKT=πρs/2T_{\rm BKT}=\pi\rho_s/2 is the vortex mediated Berezinskii-Kosterlitz-Thouless transition temperature. Above this temperature the operators cosβϕ\cos\beta \phi and cos(2πϑ/β)\cos(2\pi \vartheta/\beta) are both relevant and the system is in a phase with coexisting order parameters. ϑ\vartheta is the dual field of ϕ\phi and β\beta is the sine-Gordon coupling constant. We provide numerical estimates for thermodynamic quantities for the range of parameters relevant for GaAs.

Keywords

Cite

@article{arxiv.cond-mat/0201343,
  title  = {Thermodynamics of the Double-Layer Quantum Hall Systems},
  author = {Emiliano Papa and Alexei Tsvelik},
  journal= {arXiv preprint arXiv:cond-mat/0201343},
  year   = {2009}
}

Comments

6 pages, 4 figures, final version as published