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单自旋中缀饰态的全电驱动与探测

All-Electrical Driving and Probing of Dressed States in a Single Spin.

作者信息

Bui Hong T, Wolf Christoph, Wang Yu, Haze Masahiro, Ardavan Arzhang, Heinrich Andreas J, Phark Soo-Hyon

机构信息

Center for Quantum Nanoscience, Institute for Basic Science (IBS), Seoul 03760, Korea.

Department of Physics, Ewha Womans University, Seoul 03760, Korea.

出版信息

ACS Nano. 2024 May 14;18(19):12187-12193. doi: 10.1021/acsnano.4c00196. Epub 2024 May 2.

Abstract

The subnanometer distance between tip and sample in a scanning tunneling microscope (STM) enables the application of very large electric fields with a strength as high as ∼1 GV/m. This has allowed for efficient electrical driving of Rabi oscillations of a single spin on a surface at a moderate radiofrequency (RF) voltage on the order of tens of millivolts. Here, we demonstrate the creation of dressed states of a single electron spin localized in the STM tunnel junction by using resonant RF driving voltages. The read-out of these dressed states was achieved all electrically by a weakly coupled probe spin. Our work highlights the strength of the atomic-scale geometry inherent to the STM that facilitates the creation and control of dressed states, which are promising for the design of atomic scale quantum devices using individual spins on surfaces.

摘要

扫描隧道显微镜(STM)中针尖与样品之间的亚纳米距离使得能够施加强度高达约1 GV/m的非常大的电场。这使得在几十毫伏量级的中等射频(RF)电压下,能够有效地电驱动表面单个自旋的拉比振荡。在此,我们展示了通过使用共振RF驱动电压来创建STM隧道结中单个电子自旋的缀饰态。这些缀饰态的读出完全通过一个弱耦合的探测自旋以电学方式实现。我们的工作突出了STM固有的原子尺度几何结构的优势,这种结构便于创建和控制缀饰态,这对于使用表面单个自旋设计原子尺度量子器件很有前景。

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