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Metamorphosis of a quantum Hall bilayer state into a composite fermion metal

机译:量子霍尔双层态变质为复合费米子金属

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Composite fermion (CF) metal states emerge in quantum Hall bilayers at total Landau level filling factor v(T) = 1 when the tunneling gap collapses by application of in-plane component of the magnetic field. Evidence of this transformation is found in the continua of spin excitations observed by inelastic light scattering below the spin-wave mode at the Zeeman energy. The low-lying spin modes are interpreted as quasiparticle excitations with simultaneous changes in spin orientation and composite fermion Landau level index. The results highlight significant differences of bilayer CF quasiparticles from those in single layers. (c) 2007 Elsevier Ltd. All rights reserved.
机译:复合费米子(CF)金属态在量子霍尔双层中出现,总朗道能级填充因子v(T) = 1,当隧穿间隙通过施加磁场的平面内分量而坍塌时。这种转变的证据是在塞曼能量下通过自旋波模式下方的非弹性光散射观察到的自旋激发的连续性中发现的。低位自旋模式被解释为准粒子激发,同时自旋取向和复合费米子朗道能级指数发生变化。结果表明,双层CF准颗粒与单层CF准颗粒存在显著差异。(c) 2007 Elsevier Ltd.保留所有权利。

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