Photonic-integrated quantum sensor array for microscale magnetic localisation

Fuente: arXiv
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Autori principali: Weng, Hao-Cheng, Rarity, John G., Balram, Krishna C., Smith, Joe A.
Natura: Preprint
Pubblicazione: 2025
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author Weng, Hao-Cheng
Rarity, John G.
Balram, Krishna C.
Smith, Joe A.
author_facet Weng, Hao-Cheng
Rarity, John G.
Balram, Krishna C.
Smith, Joe A.
contents Nitrogen-vacancy centres (NVs) are promising solid-state nanoscale quantum sensors for applications ranging from material science to biotechnology. Using multiple sensors simultaneously offers advantages for probing spatiotemporal correlations of fluctuating fields or the dynamics of point defects. In this work, by integrating NVs with foundry silicon-nitride photonic integrated circuits, we realise the scalable operation of eight localised NV sensors in an array, with simultaneous, distinct readout of the individual sensors. Using the eight NV sensors and machine-learning methods for multi-point magnetic field reconstruction, we demonstrate microscale magnetic localisation of a 30 $μ$m-sized needle tip. Experimentally, the needle tip can be localised with an error below its dimension and tracked dynamically with high fidelity. We further simulate the feasibility of our platform for monitoring the position and orientation of magnetic microrobots designed for biological and clinical purposes. Without the complexity of bulk optics, our photonic-integrated multi-sensor platform presents a step towards real-life biomedical applications under out-of-the-lab conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2511_11496
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Photonic-integrated quantum sensor array for microscale magnetic localisation
Weng, Hao-Cheng
Rarity, John G.
Balram, Krishna C.
Smith, Joe A.
Quantum Physics
Applied Physics
Optics
Nitrogen-vacancy centres (NVs) are promising solid-state nanoscale quantum sensors for applications ranging from material science to biotechnology. Using multiple sensors simultaneously offers advantages for probing spatiotemporal correlations of fluctuating fields or the dynamics of point defects. In this work, by integrating NVs with foundry silicon-nitride photonic integrated circuits, we realise the scalable operation of eight localised NV sensors in an array, with simultaneous, distinct readout of the individual sensors. Using the eight NV sensors and machine-learning methods for multi-point magnetic field reconstruction, we demonstrate microscale magnetic localisation of a 30 $μ$m-sized needle tip. Experimentally, the needle tip can be localised with an error below its dimension and tracked dynamically with high fidelity. We further simulate the feasibility of our platform for monitoring the position and orientation of magnetic microrobots designed for biological and clinical purposes. Without the complexity of bulk optics, our photonic-integrated multi-sensor platform presents a step towards real-life biomedical applications under out-of-the-lab conditions.
title Photonic-integrated quantum sensor array for microscale magnetic localisation
topic Quantum Physics
Applied Physics
Optics
url https://arxiv.org/abs/2511.11496