QUANTUM HALL LIQUID, JOSEPHSON EFFECT, AND HIERARCHY IN A DOUBLE-LAYER ELECTRON-SYSTEM

被引:127
作者
EZAWA, ZF [1 ]
IWAZAKI, A [1 ]
机构
[1] NISHOGAKUSHA UNIV,DEPT PHYS,SHONAN MACHI 277,JAPAN
来源
PHYSICAL REVIEW B | 1993年 / 47卷 / 12期
关键词
D O I
10.1103/PhysRevB.47.7295
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Based on a bosonic Chern-Simons gauge theory, we present a microscopic theory of a double-layer electron system in which even-denominator fractional quantum Hall (FQH) states have been observed in a strong external magnetic field. In our approach electrons belonging to different layers axe interpreted as two distinguishable anyons with appropriate statistics. Neglecting the Zeeman energy, we find in semiclassical approximation that Hall states are realized as condensed states of the bosonized electrons in both of the layers. We calculate the Coulomb energy of the Hall states as well as some excitation spectrum as a function of the distance between the two layers. We also derive the ground-state wave function, which is found to coincide with that of Halperin for a nonvanishing interlayer distance. We find a superfluidity mode in FQH states at the filling nu = 1, 1/3, 1/5,..., in which the interlayer tunneling acts as a Josephson junction in the states. It is manifest in our formalism that the Josephson current is given by J = DELTA(SASrho0) sin(eVt + delta0) for a constant voltage V applied between the two layers, where DELTA(SAS) is the gap energy between the symmetric and antisymmetric single-particle states and rho0 is the average electron density in one layer. The observation of the Josephson effect constitutes a direct experimental test of the existence of condensation of bosonized electrons in FQH states. A hierarchy of the FQH states is also analyzed by using an effective-field theory of vortex solitons (quasiparticles).
引用
收藏
页码:7295 / 7311
页数:17
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