Detection and manipulation of surface electric field noise of hexagonal boron nitride

Fuente: arXiv
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Autori principali: Zhou, Hao-Jie, Shen, Xiao-Wen, Zhou, Yu, Dong, Lei, Chen, Pei-Qin, Chen, Xia, Deng, Guang-Wei, Xiang, Gang, Guo, Pei-Jie, Wang, Tian-Ke, Wu, Hong-Peng, Wang, Jun-Feng
Natura: Preprint
Pubblicazione: 2025
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author Zhou, Hao-Jie
Shen, Xiao-Wen
Zhou, Yu
Dong, Lei
Chen, Pei-Qin
Chen, Xia
Deng, Guang-Wei
Xiang, Gang
Guo, Pei-Jie
Wang, Tian-Ke
Wu, Hong-Peng
Wang, Jun-Feng
author_facet Zhou, Hao-Jie
Shen, Xiao-Wen
Zhou, Yu
Dong, Lei
Chen, Pei-Qin
Chen, Xia
Deng, Guang-Wei
Xiang, Gang
Guo, Pei-Jie
Wang, Tian-Ke
Wu, Hong-Peng
Wang, Jun-Feng
contents Hexagonal boron nitride (hBN) spin defects off er transformative potential for quantum sensing through atomic-scale proximity to target samples, yet their performance is fundamentally limited by rapid coherence loss. While magnetic noise mechanisms have been extensively studied, another critical infl uence from surface electric fi eld noise remains unexplored in hBN systems. Here,we address this challenge and systematically investigate surface electric fi eld noise in hBN using shallow boron vacancy defects. The double-quantum spin relaxation behavior in response to magnetic fi elds and defect depths is examined, revealing that the relaxation rate follows a distinctive depth-related power-law dependence of ODMR splitting frequency. The relaxation is also demonstrated to be independent of the defect concentrations. Furthermore, the temperature dependence of the relaxation rate is investigated, showing a noticeable rise as the temperature increases from 296 K to 453 K, thus highlighting the infl uence of thermal eff ects on spin relaxation. To further suppress surface electric fi eld noise, we explore the eff ectiveness of passivation materials, including glycerol and PMMA. Notably, PMMA is more effi cient in mitigating surface electric fi eld noise. These experiments enhance the understanding of surface electric fi eld noise in hBN and provide a foundation for developing noise mitigation strategies in future research.
format Preprint
id arxiv_https___arxiv_org_abs_2506_07734
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Detection and manipulation of surface electric field noise of hexagonal boron nitride
Zhou, Hao-Jie
Shen, Xiao-Wen
Zhou, Yu
Dong, Lei
Chen, Pei-Qin
Chen, Xia
Deng, Guang-Wei
Xiang, Gang
Guo, Pei-Jie
Wang, Tian-Ke
Wu, Hong-Peng
Wang, Jun-Feng
Quantum Physics
Hexagonal boron nitride (hBN) spin defects off er transformative potential for quantum sensing through atomic-scale proximity to target samples, yet their performance is fundamentally limited by rapid coherence loss. While magnetic noise mechanisms have been extensively studied, another critical infl uence from surface electric fi eld noise remains unexplored in hBN systems. Here,we address this challenge and systematically investigate surface electric fi eld noise in hBN using shallow boron vacancy defects. The double-quantum spin relaxation behavior in response to magnetic fi elds and defect depths is examined, revealing that the relaxation rate follows a distinctive depth-related power-law dependence of ODMR splitting frequency. The relaxation is also demonstrated to be independent of the defect concentrations. Furthermore, the temperature dependence of the relaxation rate is investigated, showing a noticeable rise as the temperature increases from 296 K to 453 K, thus highlighting the infl uence of thermal eff ects on spin relaxation. To further suppress surface electric fi eld noise, we explore the eff ectiveness of passivation materials, including glycerol and PMMA. Notably, PMMA is more effi cient in mitigating surface electric fi eld noise. These experiments enhance the understanding of surface electric fi eld noise in hBN and provide a foundation for developing noise mitigation strategies in future research.
title Detection and manipulation of surface electric field noise of hexagonal boron nitride
topic Quantum Physics
url https://arxiv.org/abs/2506.07734