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Tunneling, dissipation, and superfluid transition in quantum Hall bilayers

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arxiv cond-mat/0306553 v3 pith:PUBJUA4V submitted 2003-06-22 cond-mat.mes-hall cond-mat.str-el

Tunneling, dissipation, and superfluid transition in quantum Hall bilayers

classification cond-mat.mes-hall cond-mat.str-el
keywords interlayerquantumsigmahalltunnelingphasedissipationdissipative
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We study bilayer quantum Hall systems at total Landau level filling factor $\nu=1$ in the presence of interlayer tunneling and coupling to a dissipative normal fluid. Describing the dynamics of the interlayer phase by an effective quantum dissipative XY model, we show that there exists a critical dissipation $\sigma_c$ set by the conductance of the normal fluid. For $\sigma > \sigma_c$, interlayer tunnel splitting drives the system to a $\nu=1$ quantum Hall state. For $\sigma <\sigma_c$, interlayer tunneling is irrelevant at low temperatures, the system exhibits a superfluid transition to a collective quantum Hall state supported by spontaneous interlayer phase coherence. The resulting phase structure and the behavior of the in-plane and tunneling currents are studied in connection to experiments.

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