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Main Authors: Vetter, Philipp J., Marshall, Alastair, Genov, Genko T., Weiss, Tim F., Striegler, Nico, Großmann, Eva F., Casado, Santiago Oviedo, Cerrillo, Javier, Prior, Javier, Neumann, Philipp, Jelezko, Fedor
Format: Preprint
Published: 2021
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Online Access:https://arxiv.org/abs/2107.10537
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author Vetter, Philipp J.
Marshall, Alastair
Genov, Genko T.
Weiss, Tim F.
Striegler, Nico
Großmann, Eva F.
Casado, Santiago Oviedo
Cerrillo, Javier
Prior, Javier
Neumann, Philipp
Jelezko, Fedor
author_facet Vetter, Philipp J.
Marshall, Alastair
Genov, Genko T.
Weiss, Tim F.
Striegler, Nico
Großmann, Eva F.
Casado, Santiago Oviedo
Cerrillo, Javier
Prior, Javier
Neumann, Philipp
Jelezko, Fedor
contents Over the years, an enormous effort has been made to establish nitrogen vacancy (NV) centers in diamond as easily accessible and precise magnetic field sensors. However, most of their sensing protocols rely on the application of bias magnetic fields, preventing their usage in zero- or low-field experiments. We overcome this limitation by exploiting the full spin $S=1$ nature of the NV center, allowing us to detect nuclear spin signals at zero- and low-field with a linearly polarized microwave field. As conventional dynamical decoupling protocols fail in this regime, we develop new robust pulse sequences and optimized pulse pairs, which allow us to sense temperature and weak AC magnetic fields and achieve an efficient decoupling from environmental noise. Our work allows for much broader and simpler applications of NV centers as magnetic field sensors in the zero- and low-field regime and can be further extended to three-level systems in ions and atoms.
format Preprint
id arxiv_https___arxiv_org_abs_2107_10537
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Zero- and Low-Field Sensing with Nitrogen Vacancy Centers
Vetter, Philipp J.
Marshall, Alastair
Genov, Genko T.
Weiss, Tim F.
Striegler, Nico
Großmann, Eva F.
Casado, Santiago Oviedo
Cerrillo, Javier
Prior, Javier
Neumann, Philipp
Jelezko, Fedor
Quantum Physics
Over the years, an enormous effort has been made to establish nitrogen vacancy (NV) centers in diamond as easily accessible and precise magnetic field sensors. However, most of their sensing protocols rely on the application of bias magnetic fields, preventing their usage in zero- or low-field experiments. We overcome this limitation by exploiting the full spin $S=1$ nature of the NV center, allowing us to detect nuclear spin signals at zero- and low-field with a linearly polarized microwave field. As conventional dynamical decoupling protocols fail in this regime, we develop new robust pulse sequences and optimized pulse pairs, which allow us to sense temperature and weak AC magnetic fields and achieve an efficient decoupling from environmental noise. Our work allows for much broader and simpler applications of NV centers as magnetic field sensors in the zero- and low-field regime and can be further extended to three-level systems in ions and atoms.
title Zero- and Low-Field Sensing with Nitrogen Vacancy Centers
topic Quantum Physics
url https://arxiv.org/abs/2107.10537