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Forward scattering approximation and bosonization in integer quantum Hall systems

机译:整数量子霍尔系统中的正向散射近似和玻化

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In this work, we present a model and a method to study integer quantum Hall (IQH) systems. Making use of the Landau levels structure we divide these two-dimensional systems into a set of interacting one-dimensional gases, one for each guiding center. We show that the so-called strong field approximation, used by Kallin and Halperin and by MacDonald, is equivalent, in first order, to a forward scattering approximation and analyze the IQH systems within this approximation. Using an appropriate variation of the Landau level bosonization method we obtain the dispersion relations for the collective excitations and the single-particle spectral functions. For the bulk states, these results evidence a behavior typical of non-normal strongly correlated systems, including the spin-charge splitting of the single-particle spectral function. We discuss the origin of this behavior in the light of the Tomonaga-Luttinger model and the bosonization of two-dimensional electron gases. (C) 2007 Elsevier Inc. All rights reserved.
机译:在这项工作中,我们提出了研究整数量子霍尔(IQH)系统的模型和方法。利用Landau层结构,我们将这些二维系统划分为一组相互作用的一维气体,每个引导中心一个。我们表明,由Kallin和Halperin以及由MacDonald使用的所谓强场近似在第一阶等效于正向散射近似,并分析了该近似中的IQH系统。使用朗道能级玻化方法的适当变化,我们获得了集体激发和单粒子光谱函数的色散关系。对于整体状态,这些结果证明了非正态强相关系统的典型行为,包括单粒子光谱函数的自旋电荷分裂。我们根据Tomonaga-Luttinger模型和二维电子气的玻色化讨论了这种行为的起源。 (C)2007 Elsevier Inc.保留所有权利。

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