论文标题
双层激子绝缘子的极化子光谱法
Polaron spectroscopy of a bilayer excitonic insulator
论文作者
论文摘要
制造二维材料及其Moiré异质结构的最新进展为实现地面激子绝缘子的新途径开辟了新的途径,在该材料中,该结构自发地发展了有限的层间电子极化。我们提出并分析了一种方案,其中通过激发弹性仪从激发仪中筛选出光学生成的内部激子激子以形成层间极性。使用量子蒙特 - 卡洛计算,我们首先确定由biexciton状态的结合能,由层间和内层激子组成,该状态在理解极化子形成中起着核心作用。我们使用BCS理论描述了基础凝结物中的激发,并使用单个相互作用的Quasiparticle-Pair-Pair-Pair兴奋Ansatz来描述光激发的动态筛选。我们的预测具有激子绝缘子激发光谱的标志,并显示了如何通过增加层分离来改变层间激子结合能,从而改变了光谱。
Recent advances in fabrication of two dimensional materials and their moiré heterostructures have opened up new avenues for realization of ground-state excitonic insulators, where the structure spontaneously develops a finite interlayer electronic polarization. We propose and analyze a scheme where an optically generated intralayer exciton is screened by excitations out of the excitonic insulator to form interlayer polarons. Using Quantum Monte-Carlo calculations we first determine the binding energy of the biexciton state composed of inter- and intralayer excitons, which plays a central role in understanding polaron formation. We describe the excitations out of the ground-state condensate using BCS theory and use a single interacting-quasiparticle-pair excitation Ansatz to describe dynamical screening of optical excitations. Our predictions carry the hallmarks of the excitonic insulator excitation spectrum and show how changing the interlayer exciton binding energy by increasing the layer separation modifies the optical spectra.