Institute of Theoretical Physics, Chinese Academy of Sciences, P.O. Box 2735, Beijing 100190, China.
Phys Rev Lett. 2010 Nov 19;105(21):216801. doi: 10.1103/PhysRevLett.105.216801. Epub 2010 Nov 17.
A theory is developed for the paired even-denominator fractional quantum Hall states in the lowest Landau level. We show that electrons bind to quantized vortices to form composite fermions, interacting through an exact instantaneous interaction that favors chiral p-wave pairing. There are two canonically dual pairing gap functions related by the bosonic Laughlin wave function (Jastrow factor) due to the correlation holes. We find that the ground state is the Moore-Read Pfaffian in the long-wavelength limit for weak Coulomb interactions, a new Pfaffian with an oscillatory pairing function for intermediate interactions, and a Read-Rezayi composite Fermi liquid beyond a critical interaction strength. Our findings are consistent with recent experimental observations of the 1/2 and 1/4 fractional quantum Hall effects in asymmetric wide quantum wells.
我们提出了一种关于最低朗道能级中偶分母分数量子霍尔态的配对理论。我们表明,电子通过精确的瞬时相互作用束缚在量子涡旋上形成复合费米子,这种相互作用有利于手性 p 波配对。由于相关空穴的存在,存在两个正则对偶的配对间隙函数,它们由玻色 Laughlin 波函数(Jastrow 因子)联系起来。我们发现,在长波极限下,对于弱库仑相互作用,基态是 Moore-Read Pfaffian,对于中等相互作用,基态是具有振荡配对函数的新 Pfaffian,对于超过临界相互作用强度,基态是 Read-Rezayi 复合费米液体。我们的发现与最近在非对称宽量子阱中观察到的 1/2 和 1/4 分数量子霍尔效应的实验结果一致。