arXiv · 1804.04631
Enhancing fluorescence excitation and collection from the nitrogen-vacancy center in diamond through a micro-concave mirror
Abstract
We experimentally demonstrate a simple and robust optical fibers based method to achieve simultaneously efficient excitation and fluorescence collection from Nitrogen-Vacancy (NV) defects containing micro-crystalline diamond. We fabricate a suitable micro-concave (MC) mirror that focuses scattered excitation laser light into the diamond located at the focal point of the mirror. At the same instance, the mirror also couples the fluorescence light exiting out of the diamond crystal in the opposite direction of the optical fiber back into the optical fiber within its light acceptance cone. This part of fluorescence would have been otherwise lost from reaching the detector. Our proof-of-principle demonstration achieves a 25 times improvement in fluorescence collection compared to the case of not using any mirrors. The increase in light collection favors getting high signal-to-noise ratio (SNR) optically detected magnetic resonance (ODMR) signals hence offers a practical advantage in fiber-based NV quantum sensors. Additionally, we compacted the NV sensor system by replacing some bulky optical elements in the optical path with a 1x2 fiber optical coupler in our optical system. This reduces the complexity of the system and provides portability and robustness needed for applications like magnetic endoscopy and remote-magnetic sensing.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Dewen Duan, Vinaya Kumar Kavatamane, Sri Ranjini Arumugam, Ganesh Rahane, Yan-Kai Tzeng, Huan-Cheng Chang, Hitoshi Sumiya, Shinobu Onoda, Junichi Isoya, Gopalakrishnan Balasubramanian. 2018-08-24. Enhancing fluorescence excitation and collection from the nitrogen-vacancy center in diamond through a micro-concave mirror. https://doi.org/10.1063/1.5037807
Cite the original work for its findings. Save a collection to share your selection of sources.