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Charge dynamics in doped Mott insulators on a honeycomb lattice

机译:蜂窝晶格上掺杂Mott绝缘子的电荷动力学

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摘要

Within the framework of the fermion-spin theory, the charge transport in the doped Mott insulators on a honeycomb lattice is studied by taking into account the pseudogap effect. It is shown that the conductivity spectrum in the low-doped regime is separated by the pseudogap into a low-energy non-Drude peak followed by a broad mid-infrared band. However, the decrease of the pseudogap with the increase of doping leads to a shift of the position of the mid-infrared band towards the low-energy non-Drude peak, and then the low-energy Drude behavior recovers in the high-doped regime. The combined results of both the doped honeycomb-lattice and square-lattice Mott insulators indicate that the two-component conductivity induced by the pseudogap is a universal feature in the doped Mott insulators.
机译:在费米子自旋理论的框架内,通过考虑拟间隙效应,研究了在蜂窝晶格上掺杂的Mott绝缘子中的电荷传输。结果表明,低掺杂状态下的电导谱被伪间隙分离为低能量的非德鲁德峰,随后是宽的中红外波段。然而,随着能隙的增加,伪能隙的减少导致中红外波段的位置向低能非德鲁峰移动,然后低能德鲁德行为在高掺杂状态下恢复。 。掺杂的蜂窝格和方格莫特绝缘子的综合结果表明,由伪间隙引起的两组分电导率是掺杂的莫特绝缘子的普遍特征。

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