论文标题

三联烯分子膜中动量选择性光吸收

Momentum selective optical absorption in triptycene molecular membrane

论文作者

Akita, Masashi, Fujii, Yasumaru, Maruyama, Mina, Okada, Susumu, Wakabayashi, Katsunori

论文摘要

理论上已经研究了线性和循环极化光照射下的三联苯分子膜(TMM)的光学特性。由于TMM具有其$π$ - 电子的双层kagome晶格结构,即三角形和六边形对称环的平铺,因此TMMS的电子带结构具有非等效的Dirac锥和完美的扁平带。通过构建紧密结合模型来描述TMMS的Pi电子状态,我们评估了基于Kubo公式对TMM的光吸收强度和山谷选择性激发。发现吸收强度至关重要地取决于光偏光角和动量空间中的激发位置,即动量和山谷选择性光激发。也通过使用组理论分析来阐明极化依赖性和光学选择规则。

The optical properties of triptycene molecular membranes (TMMs) under the linearly and circularly polarized light irradiation have been theoretically studied. Since TMMs have the double-layered Kagome lattice structures for their $π$-electrons, i.e., tiling of trigonal and hexagonal-symmetric rings, the electronic band structures of TMMs have non-equivalent Dirac cones and perfect flat bands. By constructing the tight-binding model to describe the pi-electronic states of TMMs, we have evaluated the optical absorption intensities and valley selective excitation of TMMs based on the Kubo formula. It is found that absorption intensities crucially depend on both light polarization angle and the excitation position in momentum space, i.e., the momentum and valley selective optical excitation. The polarization dependence and optical selection rules are also clarified by using group theoretical analyses.

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