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首页> 外文期刊>Physical review, B >Effective Floquet Hamiltonians for periodically driven twisted bilayer graphene
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Effective Floquet Hamiltonians for periodically driven twisted bilayer graphene

机译:用于定期驱动的双层石墨烯的有效浮子汉密尔顿人

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摘要

We derive effective Floquet Hamiltonians for twisted bilayer graphene driven by circularly polarized light in two different regimes beyond the weak-drive, high-frequency regime. First, we consider a driving protocol relevant for experiments with frequencies smaller than the bandwidth and weak amplitudes and derive an effective Hamiltonian, which through a symmetry analysis, provides analytical insight into the rich effects of the drive. We find that circularly polarized light at low frequencies can selectively decrease the strength of AA-type interlayer hopping while leaving the AB-type unaffected. Then, we consider the intermediate frequency and intermediate-strength drive regime. We provide a compact and accurate effective Hamiltonian which we compare with the Van Vleck expansion and demonstrate that it provides a significantly improved representation of the exact quasienergies. Finally, we discuss the effect of the drive on the symmetries, Fermi velocity, and the gap of the Floquet flat bands.
机译:我们推出了由圆偏振光驱动的扭曲双层石墨烯的有效浮子·汉密尔顿人,在两个不同的政权之外,超出弱势驱动,高频制度。首先,我们考虑一种与小于带宽和弱幅度小的实验相关的驾驶协议,并导出通过对称性分析的有效汉密尔顿人,为驱动器的丰富效果提供分析洞察力。我们发现低频下的圆偏振光可以选择性地降低AA型层间跳跃的强度,同时使AB型不受影响。然后,我们考虑中频和中间强度的驱动制度。我们提供了一种紧凑且准确的有效的汉密尔顿,我们与Van Vleeck扩展进行了比较,并证明它提供了精确的Quasienergies的显着改善。最后,我们讨论了驱动器对对称,费米速度和浮子平带的间隙的影响。

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