Spin-polarized scanning tunneling microscopy measurement scheme for determining the quantum geometric tensor

Fuente: arXiv
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Main Authors: Zhang, Shu-Hui, Yang, Jin, Shao, Ding-Fu, Zhu, Jia-Ji, You, Wen-Long, Yang, Wen, Chang, Kai
Format: Preprint
Published: 2025
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author Zhang, Shu-Hui
Yang, Jin
Shao, Ding-Fu
Zhu, Jia-Ji
You, Wen-Long
Yang, Wen
Chang, Kai
author_facet Zhang, Shu-Hui
Yang, Jin
Shao, Ding-Fu
Zhu, Jia-Ji
You, Wen-Long
Yang, Wen
Chang, Kai
contents The quantum geometric tensor (QGT) embodies the geometry of the eigenstates of a system's Hamiltonian, and its full characterization across diverse quantum systems is essential. However, it is challenging to characterize the QGT of solid-state systems. Here we present an electric scheme to measure the complete QGT of two-dimensional solid-state systems by using spin-polarized scanning tunneling microscopy (STM), in which the spin texture is extracted from geometric amplitudes of Friedel oscillations induced by the intentionally introduced magnetic impurity, and then the QGT is derived from the momentum differential of spin texture. As a canonical spin model, the surface states of a topological insulator offer a promising way to demonstrate the scheme. In a slab of topological insulator, the gapped surface states host complete QGT, i.e., nonvanishing quantum metric and Berry curvature as its symmetric real part and the antisymmetric imaginary part. Thus, a detailed derivation guides the use of the developed scheme to measure the QGT of gapped surface states, even with an external magnetic field. This study opens a new avenue to directly measure the complete QGT of two-dimensional solid-state systems by using spin-polarized STM.
format Preprint
id arxiv_https___arxiv_org_abs_2501_13588
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spin-polarized scanning tunneling microscopy measurement scheme for determining the quantum geometric tensor
Zhang, Shu-Hui
Yang, Jin
Shao, Ding-Fu
Zhu, Jia-Ji
You, Wen-Long
Yang, Wen
Chang, Kai
Mesoscale and Nanoscale Physics
The quantum geometric tensor (QGT) embodies the geometry of the eigenstates of a system's Hamiltonian, and its full characterization across diverse quantum systems is essential. However, it is challenging to characterize the QGT of solid-state systems. Here we present an electric scheme to measure the complete QGT of two-dimensional solid-state systems by using spin-polarized scanning tunneling microscopy (STM), in which the spin texture is extracted from geometric amplitudes of Friedel oscillations induced by the intentionally introduced magnetic impurity, and then the QGT is derived from the momentum differential of spin texture. As a canonical spin model, the surface states of a topological insulator offer a promising way to demonstrate the scheme. In a slab of topological insulator, the gapped surface states host complete QGT, i.e., nonvanishing quantum metric and Berry curvature as its symmetric real part and the antisymmetric imaginary part. Thus, a detailed derivation guides the use of the developed scheme to measure the QGT of gapped surface states, even with an external magnetic field. This study opens a new avenue to directly measure the complete QGT of two-dimensional solid-state systems by using spin-polarized STM.
title Spin-polarized scanning tunneling microscopy measurement scheme for determining the quantum geometric tensor
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2501.13588