Complex 3-Dimensional Microscale Structures for Quantum Sensing Applications
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arXiv
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| Main Authors: | , , , , , , , , , |
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| Format: | Preprint |
| Published: |
2023
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| _version_ | 1866916077543358464 |
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| author | Blankenship, Brian W. Jones, Zachary Zhao, Naichen Singh, Harpreet Sarkar, Adrisha Li, Runxuan Suh, Erin Chen, Alan Grigoropoulos, Costas Ajoy, Ashok |
| author_facet | Blankenship, Brian W. Jones, Zachary Zhao, Naichen Singh, Harpreet Sarkar, Adrisha Li, Runxuan Suh, Erin Chen, Alan Grigoropoulos, Costas Ajoy, Ashok |
| contents | We present a novel method for fabricating highly customizable three-dimensional structures hosting quantum sensors based on Nitrogen Vacancy (NV) centers using two-photon polymerization. This approach overcomes challenges associated with structuring traditional single-crystal quantum sensing platforms and enables the creation of complex, fully three-dimensional, sensor assemblies with sub-microscale resolutions (down to 400 nm) and large fields of view (>1 mm). By embedding NV center-containing nanoparticles in exemplary structures, we demonstrate high sensitivity optical sensing of temperature and magnetic fields at the microscale. Our work showcases the potential for integrating quantum sensors with advanced manufacturing techniques, facilitating the incorporation of sensors into existing microfluidic and electronic platforms, and opening new avenues for widespread utilization of quantum sensors in various applications. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2307_15233 |
| institution | arXiv |
| publishDate | 2023 |
| record_format | arxiv |
| spellingShingle | Complex 3-Dimensional Microscale Structures for Quantum Sensing Applications Blankenship, Brian W. Jones, Zachary Zhao, Naichen Singh, Harpreet Sarkar, Adrisha Li, Runxuan Suh, Erin Chen, Alan Grigoropoulos, Costas Ajoy, Ashok Quantum Physics Applied Physics We present a novel method for fabricating highly customizable three-dimensional structures hosting quantum sensors based on Nitrogen Vacancy (NV) centers using two-photon polymerization. This approach overcomes challenges associated with structuring traditional single-crystal quantum sensing platforms and enables the creation of complex, fully three-dimensional, sensor assemblies with sub-microscale resolutions (down to 400 nm) and large fields of view (>1 mm). By embedding NV center-containing nanoparticles in exemplary structures, we demonstrate high sensitivity optical sensing of temperature and magnetic fields at the microscale. Our work showcases the potential for integrating quantum sensors with advanced manufacturing techniques, facilitating the incorporation of sensors into existing microfluidic and electronic platforms, and opening new avenues for widespread utilization of quantum sensors in various applications. |
| title | Complex 3-Dimensional Microscale Structures for Quantum Sensing Applications |
| topic | Quantum Physics Applied Physics |
| url | https://arxiv.org/abs/2307.15233 |