SPONTANEOUS INTERLAYER COHERENCE IN DOUBLE-LAYER QUANTUM HALL SYSTEMS - CHARGED VORTICES AND KOSTERLITZ-THOULESS PHASE-TRANSITIONS

被引:628
作者
MOON, K
MORI, H
YANG, K
GIRVIN, SM
MACDONALD, AH
ZHENG, L
YOSHIOKA, D
ZHANG, SC
机构
[1] UNIV KENTUCKY,DEPT PHYS & ASTRON,LEXINGTON,KY 40506
[2] UNIV TOKYO,COLL ARTS & SCI,INST PHYS,MEGURO KU,TOKYO 153,JAPAN
[3] STANFORD UNIV,DEPT PHYS,PALO ALTO,CA 94305
来源
PHYSICAL REVIEW B | 1995年 / 51卷 / 08期
关键词
D O I
10.1103/PhysRevB.51.5138
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
At strong magnetic fields, double-layer two-dimensional electron-gas systems can form an unusual broken-symmetry state with spontaneous interlayer phase coherence. In this paper we explore the rich variety of quantum and finite-temperature phase transitions associated with this broken symmetry. We describe the system using a pseudospin language in which the layer degree of freedom is mapped to a fictional spin 1/2 degree of freedom. With this mapping the spontaneous symmetry breaking is equivalent to that of a spin 1/2 easy-plane ferromagnet. In this language, spin textures can carry a charge. In particular, vortices carry e/2 electrical charge and vortex-antivortex pairs can be neutral or carry charge e. We derive an effective low-energy action and use it to discuss the charged and collective neutral excitations of the system. We have obtained the parameters of the Landau-Ginzburg functional from first-principles estimates and from finite-size exact diagonalization studies. We use these results to estimate the dependence of the critical temperature for the Kosterlitz-Thouless phase transition on layer separation. © 1995 The American Physical Society.
引用
收藏
页码:5138 / 5170
页数:33
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