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Rho, Yoonsoo
Photonics Research in Manufacturing and Advanced Diagnostics Lab.
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Quantum Sensing in Micro-Architected Scaffolds

Author(s)
Blankenship, Brian W.Rho, YoonsooJones, Zachary R.Meier, TimonLi, RunxuanDruga, EmanuelKorakis, VasileiosSingh, HarpreetXia, XiaoxingAjoy, AshokGrigoropoulos, Costas P.
Issued Date
2025-12
DOI
10.1021/acsami.5c22109
URI
https://scholarworks.unist.ac.kr/handle/201301/90304
Citation
ACS APPLIED MATERIALS & INTERFACES, v.17, no.51, pp.69876 - 69884
Abstract
Quantum sensing with nitrogen-vacancy centers in diamond has emerged as a powerful tool for measuring diverse physical parameters, yet the versatility of these measurement approaches is often limited by the achievable layout and dimensionality of bulk-crystal platforms. Here, we demonstrate a versatile approach to creating designer quantum sensors by surface-functionalizing multiphoton lithography microstructures with NV-containing nanodiamonds. We showcase this capability by fabricating a 150 mu m x 150 mu m x 150 mu m triply periodic minimal surface gyroid structure with millions of attached nanodiamonds. We demonstrate a means to volumetrically image these structures using a refractive index matching confocal imaging technique and extract ODMR spectra from 1.86 mu m x 1.86 mu m areas of highly concentrated nanodiamonds across a cross-section of the gyroid. Furthermore, the high density of sensing elements enables ensemble temperature measurements with a sensitivity of 0.548 +/- 0.084 K/root Hz at 5 mW excitation power. This approach to creating quantum-enabled microarchitectures opens new possibilities for multimodal sensing in complex three-dimensional environments.
Publisher
AMER CHEMICAL SOC
ISSN
1944-8244
Keyword (Author)
multiphoton-lithographyadvanced manufacturingtwo photon polymerizationquantum sensingNV centersthermometrynanodiamonds
Keyword
SPINTHERMOMETRYPRESSURENITROGEN-VACANCY CENTER

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