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分数量子霍尔效应中的分数电荷斯格明子

Fractionally charged skyrmions in fractional quantum Hall effect.

作者信息

Balram Ajit C, Wurstbauer U, Wójs A, Pinczuk A, Jain J K

机构信息

Department of Physics, 104 Davey Lab, Pennsylvania State University, University Park, Pennsylvania 16802, USA.

Walter Schottky Institut and Physik-Department, Am Coulombwall 4a, Technische Universität München, D-85748 Garching, Germany.

出版信息

Nat Commun. 2015 Nov 26;6:8981. doi: 10.1038/ncomms9981.

Abstract

The fractional quantum Hall effect has inspired searches for exotic emergent topological particles, such as fractionally charged excitations, composite fermions, abelian and nonabelian anyons and Majorana fermions. Fractionally charged skyrmions, which support both topological charge and topological vortex-like spin structure, have also been predicted to occur in the vicinity of 1/3 filling of the lowest Landau level. The fractional skyrmions, however, are anticipated to be exceedingly fragile, suppressed by very small Zeeman energies. Here we show that, slightly away from 1/3 filling, the smallest manifestations of the fractional skyrmion exist in the excitation spectrum for a broad range of Zeeman energies, and appear in resonant inelastic light scattering experiments as well-defined resonances slightly below the long wavelength spin wave mode. The spectroscopy of these exotic bound states serves as a sensitive tool for investigating the residual interaction between composite fermions, responsible for delicate new fractional quantum Hall states in this filling factor region.

摘要

分数量子霍尔效应激发了人们对奇异涌现拓扑粒子的探索,例如分数电荷激发、复合费米子、阿贝尔和非阿贝尔任意子以及马约拉纳费米子。分数电荷斯格明子既支持拓扑电荷又支持拓扑涡旋状自旋结构,据预测也会出现在最低朗道能级1/3填充附近。然而,分数斯格明子预计极其脆弱,会被非常小的塞曼能量所抑制。在此我们表明,在略偏离1/3填充时,分数斯格明子的最小表现形式存在于广泛塞曼能量范围内的激发谱中,并且在共振非弹性光散射实验中表现为略低于长波长自旋波模式的明确共振。这些奇异束缚态的光谱学是研究复合费米子之间残余相互作用的灵敏工具,这种相互作用导致了该填充因子区域中精细的新分数量子霍尔态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24e5/4674824/d5dddbcfc65b/ncomms9981-f1.jpg

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