Local nanoscale probing of electron spins using NV centers in diamond

Fuente: arXiv
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Autori principali: Trofimov, Sergei, Thessalonikios, Christos, Deinhart, Victor, Spyrantis, Alexander, Tsunaki, Lucas, Volkova, Kseniia, Höflich, Katja, Naydenov, Boris
Natura: Preprint
Pubblicazione: 2025
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author Trofimov, Sergei
Thessalonikios, Christos
Deinhart, Victor
Spyrantis, Alexander
Tsunaki, Lucas
Volkova, Kseniia
Höflich, Katja
Naydenov, Boris
author_facet Trofimov, Sergei
Thessalonikios, Christos
Deinhart, Victor
Spyrantis, Alexander
Tsunaki, Lucas
Volkova, Kseniia
Höflich, Katja
Naydenov, Boris
contents Substitutional nitrogen atoms in a diamond crystal (P1 centers) are, on one hand, a resource for creation of nitrogen-vacancy (NV) centers, that have been widely employed as nanoscale quantum sensors. On the other hand, P1's electron spin is a source of paramagnetic noise that degrades the NV's performance by shortening its coherence time. Accurate quantification of nitrogen concentration is therefore essential for optimizing diamond-based quantum devices. However, bulk characterization methods based on optical absorption or electron paramagnetic resonance often overlook local variations in nitrogen content. In this work, we use a helium ion microscope to fabricate nanoscale NV center ensembles at predefined sites in a diamond crystal containing low concentrations of nitrogen. We then utilize these NV-based probes to measure the local nitrogen concentration on the level of 230 ppb (atomic parts per billion) using the double electron-electron resonance (DEER) technique. Moreover, by comparing the DEER spectra with numerical simulations, we managed to determine the concentration of other unknown paramagnetic defects created during the ion implantation, reaching 15 ppb depending on the implantation dose.
format Preprint
id arxiv_https___arxiv_org_abs_2507_13295
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Local nanoscale probing of electron spins using NV centers in diamond
Trofimov, Sergei
Thessalonikios, Christos
Deinhart, Victor
Spyrantis, Alexander
Tsunaki, Lucas
Volkova, Kseniia
Höflich, Katja
Naydenov, Boris
Quantum Physics
Other Condensed Matter
Substitutional nitrogen atoms in a diamond crystal (P1 centers) are, on one hand, a resource for creation of nitrogen-vacancy (NV) centers, that have been widely employed as nanoscale quantum sensors. On the other hand, P1's electron spin is a source of paramagnetic noise that degrades the NV's performance by shortening its coherence time. Accurate quantification of nitrogen concentration is therefore essential for optimizing diamond-based quantum devices. However, bulk characterization methods based on optical absorption or electron paramagnetic resonance often overlook local variations in nitrogen content. In this work, we use a helium ion microscope to fabricate nanoscale NV center ensembles at predefined sites in a diamond crystal containing low concentrations of nitrogen. We then utilize these NV-based probes to measure the local nitrogen concentration on the level of 230 ppb (atomic parts per billion) using the double electron-electron resonance (DEER) technique. Moreover, by comparing the DEER spectra with numerical simulations, we managed to determine the concentration of other unknown paramagnetic defects created during the ion implantation, reaching 15 ppb depending on the implantation dose.
title Local nanoscale probing of electron spins using NV centers in diamond
topic Quantum Physics
Other Condensed Matter
url https://arxiv.org/abs/2507.13295