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pith:ULMSYV62

pith:2025:ULMSYV626KIBN3D5GVQ5WSECE6
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Dispersive readout with two orthogonal modes of a dielectric cavity

A. Chernyavskiy, A.M. Kozodaev, A.N. Smolyaninov, A.V. Akimov, I.S. Cojocaru, P.G. Vilyuzhanina, S.M. Drofa, S.V. Bolshedvorskii, S.Ya. Kilin, V.G. Vins, V.V. Soshenko

Two orthogonal modes of a dielectric cavity improve dispersive readout sensitivity for NV centers.

arxiv:2512.07356 v1 · 2025-12-08 · quant-ph · physics.ins-det

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3 Author claim open · sign in to claim
4 Citations open
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Claims

C1strongest claim

Here, we demonstrate that the dispersive readout approach can be significantly improved if a two-channel scheme is considered.

C2weakest assumption

That coupling the NV centers to two orthogonal cavity modes will yield a net sensitivity gain without introducing new decoherence, mode-cross-talk, or fabrication challenges that offset the benefit.

C3one line summary

A two-channel scheme with orthogonal modes in a dielectric cavity significantly improves dispersive readout sensitivity for NV-center magnetometers.

References

14 extracted · 14 resolved · 0 Pith anchors

[1] J.F. Barry, M.H. Steinecker, S.T. Alsid, J. Majumder, L.M. Pham, M.F. O’Keeffe, D.A. Braje, Sensitive ac and dc magnetometry with nitrogen -vacancy-center ensembles in diamond, Phys Rev Appl 22 (2024) 2024 · doi:10.1103/physrevapplied.22.044069
[2] Sensitivity optimization for nv-diamond magnetometry 2020 · doi:10.1103/revmodphys.92.015004
[3] K. Jensen, V.M. Acosta, A. Jarmola, D. Budker, Light narrowing of magnetic resonances in ensembles of nitrogen-vacancy centers in diamond, Phys Rev B Condens Matter Mater Phys 87 (2013) 1–10. https:// 2013 · doi:10.1103/physrevb.87.014115
[4] E.R. Eisenach, J.F. Barry, M.F. O’Keeffe, J.M. Schloss, M.H. Steinecker, D.R. Englund, D.A. Braje, Cavity -enhanced microwave readout of a solid -state spin sensor, Nature Communications 2021 12:1 12 2021 · doi:10.1038/s41467-021-21256-7
[5] J. Ebel, T. Joas, M. Schalk, P. Weinbrenner, A. Angerer, J. Majer, F. Reinhard, Dispersive readout of room -temperature ensemble spin sensors, Quantum Sci Technol 6 (2021) 03LT01. https://doi.org/10.1 2021 · doi:10.1088/2058-9565/abfaaf

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First computed 2026-05-18T03:09:32.846279Z
Builder pith-number-builder-2026-05-17-v1
Signature Pith Ed25519 (pith-v1-2026-05) · public key
Schema pith-number/v1.0

Canonical hash

a2d92c57daf29016ec7d3561db488227a6b6f446de9e57486e0adbab28b6e02f

Aliases

arxiv: 2512.07356 · arxiv_version: 2512.07356v1 · doi: 10.48550/arxiv.2512.07356 · pith_short_12: ULMSYV626KIB · pith_short_16: ULMSYV626KIBN3D5 · pith_short_8: ULMSYV62
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Verify this Pith Number yourself
curl -sH 'Accept: application/ld+json' https://pith.science/pith/ULMSYV626KIBN3D5GVQ5WSECE6 \
  | jq -c '.canonical_record' \
  | python3 -c "import sys,json,hashlib; b=json.dumps(json.loads(sys.stdin.read()), sort_keys=True, separators=(',',':'), ensure_ascii=False).encode(); print(hashlib.sha256(b).hexdigest())"
# expect: a2d92c57daf29016ec7d3561db488227a6b6f446de9e57486e0adbab28b6e02f
Canonical record JSON
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    "submitted_at": "2025-12-08T09:54:08Z",
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