Long-exposure Camera Readout for Coherent Control of Nitrogen-Vacancy Center Spins in Diamond

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Chen, Jiahui, Wu, Qilong, Yu, Huihui, Qu, Yi-Dan, Zhang, Yuan, Yang, Xun, Shan, Chong-Xin
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866915495001718784
author Chen, Jiahui
Wu, Qilong
Yu, Huihui
Qu, Yi-Dan
Zhang, Yuan
Yang, Xun
Shan, Chong-Xin
author_facet Chen, Jiahui
Wu, Qilong
Yu, Huihui
Qu, Yi-Dan
Zhang, Yuan
Yang, Xun
Shan, Chong-Xin
contents Camera-based wide-field quantum noise spectroscopy (QNS) with nitrogen-vacancy (NV) center spins in diamond can be used to extract DC and AC magnetic field noise with sub-micrometer spatial resolution, but its realization is currently limited by the conflict between the optimal optical spin readout time (normally below one microsecond) and the minimal camera exposure time (normally tens of microsecond). In the present article, we demonstrate fully coherent control of NV center spins via Rabi oscillation, Ramsey, Hahn echo and relaxometry experiments, i.e. the core of QNS, with a home-built camera-based setup, and achieve an unexpectedly high contrast of 12% with an optical spin readout time of 500 microseconds. We explain the absence of the above conflict in our system with the optical spin readout mechanism under weak laser illumination, where spin-lattice relaxation and weak optical pumping result in a rather slow reduction of contrast with increasing integration time. The revealed mechanism is instructive for the construction of the wide-field QNS with a sCMOS or EMCCD camera, and its application in the studies of magnetic material or superconducting material.
format Preprint
id arxiv_https___arxiv_org_abs_2509_11723
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Long-exposure Camera Readout for Coherent Control of Nitrogen-Vacancy Center Spins in Diamond
Chen, Jiahui
Wu, Qilong
Yu, Huihui
Qu, Yi-Dan
Zhang, Yuan
Yang, Xun
Shan, Chong-Xin
Quantum Physics
Camera-based wide-field quantum noise spectroscopy (QNS) with nitrogen-vacancy (NV) center spins in diamond can be used to extract DC and AC magnetic field noise with sub-micrometer spatial resolution, but its realization is currently limited by the conflict between the optimal optical spin readout time (normally below one microsecond) and the minimal camera exposure time (normally tens of microsecond). In the present article, we demonstrate fully coherent control of NV center spins via Rabi oscillation, Ramsey, Hahn echo and relaxometry experiments, i.e. the core of QNS, with a home-built camera-based setup, and achieve an unexpectedly high contrast of 12% with an optical spin readout time of 500 microseconds. We explain the absence of the above conflict in our system with the optical spin readout mechanism under weak laser illumination, where spin-lattice relaxation and weak optical pumping result in a rather slow reduction of contrast with increasing integration time. The revealed mechanism is instructive for the construction of the wide-field QNS with a sCMOS or EMCCD camera, and its application in the studies of magnetic material or superconducting material.
title Long-exposure Camera Readout for Coherent Control of Nitrogen-Vacancy Center Spins in Diamond
topic Quantum Physics
url https://arxiv.org/abs/2509.11723