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Direct probe of electronic nematic order: Symmetry information in scanning tunneling microscope images

机译:电子向列级的直接探测:扫描隧道显微镜图像中的对称信息

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An electronic nematic state spontaneously breaks a point-group symmetry of an underlying lattice. As a result, the nematic-isotropic transition accompanies a Fermi surface distortion. However, the anisotropic nature of the nematic state at a macroscopic scale can be easily wiped out when domains of different orientations of nematic order exist. We suggest that a spatial pattern of local density of states (LDOS) in the presence of a nonmagnetic impurity can be a direct probe of the nematic order. We study various patterns of LDOS across the quantum phase transition between the isotropic and nematic phases. Specifically, the Fourier transformed local density of states, which can be deduced from scanning tunneling microscope images, represents a transparent symmetry of an electronic structure. The application of our results to the bilayer ruthenate, Sr_3Ru_2O_7, is also discussed.
机译:电子向列态自发地破坏了下层晶格的点群对称性。结果,向列各向同性转变伴随着费米表面畸变。然而,当存在向列顺序的不同取向的域时,在宏观尺度上向列状态的各向异性性质可以容易地消除。我们建议存在非磁性杂质的状态局部密度(LDOS)的空间格局可以直接向列的探查。我们研究了各向同性和向列相之间的量子相变过程中LDOS的各种模式。具体地,可以从扫描隧道显微镜图像推导出的傅立叶变换的局部状态密度表示电子结构的透明对称性。还讨论了我们的结果在双层钌酸盐Sr_3Ru_2O_7中的应用。

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