论文标题

手性拓扑半学COSI中多胎费物的光学签名

Optical signatures of multifold fermions in the chiral topological semimetal CoSi

论文作者

Xu, B., Fang, Z., Sánchez-Martínez, M. A., Venderbos, J. W. F., Ni, Z., Qiu, T., Manna, K., Wang, K., Paglione, J., Bernhard, C., Felser, C., Mele, E. J., Grushin, A. G., Rappe, A. M., Wu, Liang

论文摘要

我们报告了手性拓扑半学COSI的高质量晶体中的光导率,该晶体载有被称为多form fermions的外来准颗粒。我们发现,光学响应被分为几个不同的区域,这是频率的函数,每个区域都以不同类型的准粒子为主。低频内响应是由高弹性电子口袋的狭窄drude峰捕获的,光谱重量的温度依赖性与其费米速度一致。通过在低温下减去低频尖锐的drude和声子峰,我们揭示了两个中间的准线性带间贡献,在0.2 eV时被扭结分开。使用基于第一原则计算的Wannier紧密结合模型,我们将高于0.2 eV和低于0.2 eV的光学电导率与双重韦尔福尔米(Double Weyl Fermion)和一个三倍的费米昂(Fermion)连接起来。我们分析并确定相对于三倍费米的能量的化学潜力,揭示了线性分散带和平坦带之间过渡的重要性。更引人注目的是,如果包括自旋轨道耦合,则最好解释我们的数据,这表明在这些能量下,光响应受到以前未观察到的四倍Spin-3/2节点和Weyl节点之间的过渡。我们全面的实验和理论研究提供了一种方法,可以在不同能量下解决COSI中不同类型的多fermions。更广泛地说,我们的结果为解释手性拓扑半学的光学和运输实验的迅速发展提供了必要的基础。

We report the optical conductivity in high-quality crystals of the chiral topological semimetal CoSi, which hosts exotic quasiparticles known as multifold fermions. We find that the optical response is separated into several distinct regions as a function of frequency, each dominated by different types of quasiparticles. The low-frequency intraband response is captured by a narrow Drude peak from a high-mobility electron pocket of double Weyl quasi-particles, and the temperature dependence of the spectral weight is consistent with its Fermi velocity. By subtracting the low-frequency sharp Drude and phonon peaks at low temperatures, we reveal two intermediate quasi-linear inter-band contributions separated by a kink at 0.2 eV. Using Wannier tight-binding models based on first-principle calculations, we link the optical conductivity above and below 0.2 eV to interband transitions near the double Weyl fermion and a threefold fermion, respectively. We analyze and determine the chemical potential relative to the energy of the threefold fermion, revealing the importance of transitions between a linearly dispersing band and a flat band. More strikingly, below 0.1 eV our data are best explained if spin-orbit coupling is included, suggesting that at these energies the optical response is governed by transitions between a previously unobserved four-fold spin-3/2 node and a Weyl node. Our comprehensive combined experimental and theoretical study provides a way to resolve different types of multifold fermions in CoSi at different energy. More broadly our results provide the necessary basis to interpret the burgeoning set of optical and transport experiments in chiral topological semimetals.

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