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Hall effect in noncommutative coordinates

机译:非交换坐标中的霍尔效应

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We consider electrons in uniform external magnetic and electric fields which move on a plane whose coordinates are noncommuting. Spectrum and eigenfunctions of the related Hamiltonian are obtained. We derive the electric current whose expectation value gives the Hall effect in terms of an effective magnetic field. We present a receipt to find the action which can be utilized in path integrals for noncommuting coordinates. In terms of this action we calculate the related Aharonov-Bohm phase and show that it also yields the same effective magnetic field. When magnetic field is strong enough this phase becomes independent of magnetic field. Measurement of it may give some hints on spatial noncommutativity. The noncommutativity parameter theta can be tuned such that electrons moving in noncommutative coordinates are interpreted as either leading to the fractional quantum Hall effect or composite fermions in the usual coordinates. (C) 2002 American Institute of Physics. [References: 17]
机译:我们考虑电子在均匀的外部磁场和电场中运动,这些磁场在坐标不换向的平面上移动。获得了相关哈密顿量的谱和本征函数。我们推导出电流,该电流的期望值会根据有效磁场产生霍尔效应。我们提供收据以查找可用于非通勤坐标的路径积分中的动作。根据这一作用,我们计算了相关的阿哈罗诺夫-鲍姆相,并表明它也产生相同的有效磁场。当磁场足够强时,该相位将独立于磁场。对其进行测量可能会暗示一些空间不可交换性。可以对非交换性参数theta进行调整,以便将在非交换性坐标中移动的电子解释为导致分数量子霍耳效应或在常规坐标中产生复合费米子。 (C)2002美国物理研究所。 [参考:17]

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