论文标题
Moiré平板乐队中的偶极子积极激发
Dipole-active collective excitations in moiré flat bands
论文作者
论文摘要
Moiré平面带中的集体等离子体激发显示出独特的特性,反映了这些系统中强烈的电子电子相互作用和异常的载体动力学。与传统的二维等离子模式不同,在低频下以$ \ sqrt {k} $分散,并以较高的频率下降到颗粒孔连续体中,MoiréPlasmons穿过平坦的连续体刺穿并获得了强大的频带。由于Moiré超晶格单元的复杂结构,带上的等离子具有几个不同的分支,这些分支通过超晶格布里群区域的区域折叠连接。我们使用玩具哈伯德模型在平面频段中使用的绝缘顺序,我们预测,这些高频模式在进行电荷顺序的系统上具有强大的偶极子活性,而低频模式则散布在相关的绝缘体间隙中。强大的偶极矩和对充电顺序的敏感性使这些模式可以通过光学测量很容易访问,从而提供了相关状态的方便诊断。
Collective plasma excitations in moiré flat bands display unique properties reflecting strong electron-electron interactions and unusual carrier dynamics in these systems. Unlike the conventional two-dimensional plasmon modes, dispersing as $\sqrt{k}$ at low frequencies and plunging into particle-hole continuum at higher frequencies, the moiré plasmons pierce through the flat-band continuum and acquire a strong over-the-band character. Due to the complex structure of the moiré superlattice unit cell, the over-the-band plasmons feature several distinct branches connected through zone folding in the superlattice Brillouin zone. Using a toy Hubbard model for the correlated insulating order in a flat band, we predict that these high-frequency modes become strongly dipole-active upon the system undergoing charge ordering, with the low-frequency modes gapped out within the correlated insulator gap. Strong dipole moments and sensitivity to charge order make these modes readily accessible by optical measurements, providing a convenient diagnostic of the correlated states.