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◆ npj Quantum Materials2026-03-12· Dephasing

Unraveling quantum dephasing of nitrogen-vacancy center ensembles in diamond

Jixing Zhang, Cheuk Kit Cheung, Michael Kübler, Magnus Benke, Mathis Brossaud, Yihua Wang, Andrej Denisenko, Ruoming Peng, Jen Anders, Emilio Corcione, Cristina Tarín Sauer, A. M. Edmonds, Matthew Markham, Kazuo Nakamura, Hitoshi Sumiya, S. Onoda, Junichi Isoya, Chen Zhang, Jörg Wrachtrup

原始摘要(英文原文)· Original abstract
Abstract Nitrogen-vacancy (NV) center ensembles in diamond are one of the most promising solid-state quantum platforms for various sensing applications. Achieving ultimate sensitivity requires simultaneously long spin dephasing times ( $${T}_{2}^{* }$$ T 2 * ) and high NV center concentrations. In this work, we propose a systematic measurement approach to quantify the electron spin dephasing in NV center ensembles and analyze the contributions of various sources to the dephasing time, including NV-NV interactions, strain and electric field distributions, 13 C nuclear spins, and P1 electron spins. Our method is validated using a series of high-performance diamond samples, providing a comprehensive understanding of dephasing mechanisms and revealing correlations between NV concentration and different dephasing sources. Building on these insights, we outline strategies to further enhance the achievable sensitivity for DC magnetic field measurements.
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Unraveling quantum dephasing of nitrogen-vacancy center ensembles in diamond — 科研速览 Science Skim