Exploiting ionization dynamics in the nitrogen vacancy center for rapid, high-contrast spin and charge state initialization

Fuente: arXiv
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Main Authors: Wirtitsch, Daniel, Wachter, Georg, Reisenbauer, Sarah, Gulka, Michal, Ivády, Viktor, Jelezko, Fedor, Gali, Adam, Nesladek, Milos, Trupke, Michael
Format: Preprint
Published: 2026
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author Wirtitsch, Daniel
Wachter, Georg
Reisenbauer, Sarah
Gulka, Michal
Ivády, Viktor
Jelezko, Fedor
Gali, Adam
Nesladek, Milos
Trupke, Michael
author_facet Wirtitsch, Daniel
Wachter, Georg
Reisenbauer, Sarah
Gulka, Michal
Ivády, Viktor
Jelezko, Fedor
Gali, Adam
Nesladek, Milos
Trupke, Michael
contents We propose and experimentally demonstrate a method to strongly increase the sensitivity of spin measurements on nitrogen-vacancy (NV) centers in diamond, which can be readily implemented in existing quantum sensing experiments. While charge state transitions of this defect are generally considered a parasitic effect to be avoided, we show here that these can be used to significantly increase the NV center's spin contrast, a key quantity for high sensitivity magnetometry and high fidelity state readout. The protocol consists of a two-step procedure, in which the charge state of the defect is first purified by a strong laser pulse, followed by weak illumination to obtain high spin polarization. We observe a relative improvement of the readout contrast by 17 %, and infer a reduction of the initialization error of more than 50 %. The contrast enhancement is accompanied by a beneficial increase of the readout signal. For long sequence durations, typically encountered in high-resolution magnetometry, a measurement speedup by a factor of >1.5 is extracted, and we find that the technique is beneficial for sequences of any duration. Additionally, our findings give detailed insight into the charge and spin polarization dynamics of the NV center, and provide actionable insights for direct optical, spin-to-charge, and electrical readout of solid-state spin centres.
format Preprint
id arxiv_https___arxiv_org_abs_2605_13480
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Exploiting ionization dynamics in the nitrogen vacancy center for rapid, high-contrast spin and charge state initialization
Wirtitsch, Daniel
Wachter, Georg
Reisenbauer, Sarah
Gulka, Michal
Ivády, Viktor
Jelezko, Fedor
Gali, Adam
Nesladek, Milos
Trupke, Michael
Quantum Physics
We propose and experimentally demonstrate a method to strongly increase the sensitivity of spin measurements on nitrogen-vacancy (NV) centers in diamond, which can be readily implemented in existing quantum sensing experiments. While charge state transitions of this defect are generally considered a parasitic effect to be avoided, we show here that these can be used to significantly increase the NV center's spin contrast, a key quantity for high sensitivity magnetometry and high fidelity state readout. The protocol consists of a two-step procedure, in which the charge state of the defect is first purified by a strong laser pulse, followed by weak illumination to obtain high spin polarization. We observe a relative improvement of the readout contrast by 17 %, and infer a reduction of the initialization error of more than 50 %. The contrast enhancement is accompanied by a beneficial increase of the readout signal. For long sequence durations, typically encountered in high-resolution magnetometry, a measurement speedup by a factor of >1.5 is extracted, and we find that the technique is beneficial for sequences of any duration. Additionally, our findings give detailed insight into the charge and spin polarization dynamics of the NV center, and provide actionable insights for direct optical, spin-to-charge, and electrical readout of solid-state spin centres.
title Exploiting ionization dynamics in the nitrogen vacancy center for rapid, high-contrast spin and charge state initialization
topic Quantum Physics
url https://arxiv.org/abs/2605.13480