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Magnetic field effects and renormalization of the long-range Coulomb interaction in carbon nanotubes

机译:碳纳米管中的磁场效应和远程库仑相互作用的重新归一化

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We develop two theoretical approaches for dealing with the low-energy effects of the repulsive interaction in one-dimensional electron systems. Renormalization Group methods allow us to study the low-energy behavior of the unscreened interaction between currents of well-defined chirality in a strictly one-dimensional electron system. A dimensional regularization approach is useful, when dealing with the low-energy effects of the long-range Coulomb interaction. This method allows us to avoid the infrared singularities arising from the long-range Coulomb interaction at D = 1. We can also compare these approaches with the Luttinger model, to analyze the effects of the short-range term in the interaction. Thanks to these methods, we are able to discuss the effects of a strong magnetic field B in quasi one-dimensional electron systems, by focusing our attention on Carbon Nanotubes. Our results imply a variation with B in the value of the critical exponent a for the tunneling density of states, which is in fair agreement with that observed in a recent transport experiment involving carbon nanotubes. The dimensional regularization allows us to predict the disappearance of the Luttinger liquid, when the magnetic field increases, with the formation of a chiral liquid with alpha = 0. (c) 2005 Elsevier Inc. All rights reserved.
机译:我们开发了两种理论方法来处理一维电子系统中排斥相互作用的低能效应。重整化组方法使我们能够研究严格一维电子系统中明确定义的手性电流之间未经筛选的相互作用的低能行为。当处理远程库仑相互作用的低能效应时,尺寸正则化方法很有用。这种方法使我们能够避免在D = 1时由于远程库仑相互作用而产生的红外奇异性。我们还可以将这些方法与Luttinger模型进行比较,以分析短期项在相互作用中的影响。通过这些方法,我们可以将注意力集中在碳纳米管上,从而讨论强磁场B在准一维电子系统中的作用。我们的结果表明,状态隧穿密度的临界指数a的值随B的变化而变化,这与最近的涉及碳纳米管的传输实验中观察到的结果完全吻合。尺寸正则化使我们能够预测当磁场增加时,形成α= 0的手性液体时Luttinger液体的消失。(c)2005 Elsevier Inc.保留所有权利。

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