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用于通过电子顺磁共振研究光活性自旋中心的激光脉冲

Laser Pulses for Studying Photoactive Spin Centers with EPR.

作者信息

Mamin George, Dmitrieva Ekaterina, Murzakhanov Fadis, Sadovnikova Margarita, Nagalyuk Sergey, Gafurov Marat

机构信息

Institute of Physics, Kazan Federal University, Kremlevskaya 18, 420008 Kazan, Russia.

Ioffe Institute, Russian Academy of Sciences, Polytechnicheskaya 26, 194021 St. Petersburg, Russia.

出版信息

Micromachines (Basel). 2025 Mar 28;16(4):396. doi: 10.3390/mi16040396.

Abstract

Quantum technologies are currently being explored for various applications, including computing, secure communication, and sensor technology. A critical aspect of achieving high-fidelity spin manipulations in quantum devices is the controlled optical initialization of electron spins. This paper introduces a low-cost programming scheme based on a 32-bit STM32F373 microcontroller, aimed at facilitating high-precision measurements of optically active solid-state spin centers within semiconductor crystals (SiC, hBN, and diamond) utilizing a multi-pulse sequence. The effective shaping of short optical pulses across semiconductor and solid-state lasers, covering the visible to near-infrared range (405-1064 nm), has been validated through photoinduced electron paramagnetic resonance (EPR) and electron nuclear double resonance (ENDOR) spectroscopies. The application of pulsed laser irradiation influences the EPR relaxation parameters associated with spin centers, which are crucial for advancements in quantum computing. The presented experimental approach facilitates the investigation of weak electron-nuclear interactions in crystals, a key factor in the development of quantum memory utilizing nuclear qubits.

摘要

目前正在探索量子技术在各种应用中的应用,包括计算、安全通信和传感器技术。在量子器件中实现高保真自旋操纵的一个关键方面是电子自旋的可控光学初始化。本文介绍了一种基于32位STM32F373微控制器的低成本编程方案,旨在利用多脉冲序列促进对半导体晶体(SiC、hBN和金刚石)内光学活性固态自旋中心的高精度测量。通过光致电子顺磁共振(EPR)和电子核双共振(ENDOR)光谱验证了跨半导体和固态激光器的短光脉冲在可见到近红外范围(405-1064nm)内的有效整形。脉冲激光辐照的应用会影响与自旋中心相关的EPR弛豫参数,这对量子计算的进展至关重要。所提出的实验方法有助于研究晶体中弱电子-核相互作用,这是利用核量子比特开发量子存储器的关键因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b42/12029438/2e43f968d66d/micromachines-16-00396-g001.jpg

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