Tapered ultra-high Numerical Aperture optical fiber tip for Nitrogen Vacancy ensembles based endoscope in a fluidic environment
Dewen Duan, Vinaya Kumar Kavatamane, Sri Ranjini Arumugam, Yan-Kai, Tzeng, Huan-Cheng Chang, Gopalakrishnan Balasubramanian

TL;DR
This paper introduces a tapered ultra-high NA microstructured optical fiber for NV-based endoscopes that maintains high fluorescence collection efficiency in fluidic environments with varying refractive indices.
Contribution
The study develops a sealed, tapered MOF with high NA that preserves fluorescence collection in liquids, overcoming limitations of traditional tapered fibers in high-RI environments.
Findings
High FL collection efficiency in liquids with high RI
Sealed air capillaries isolate the core from surrounding medium
Enhanced spatial resolution in NV-based endoscopy
Abstract
Fixing a diamond containing a high density of Nitrogen-Vacancy (NV) center ensembles on the apex of a multimode optical fiber (MMF) extends the applications of NV-based endoscope sensors. Replacing the normal MMF with a tapered MMF (MMF-taper) has enhanced the fluorescence (FL) collection efficiency from the diamond and achieved a high spatial resolution NV-based endoscope. The MMF-taper's high FL collection efficiency is the direct result of multiple internal reflections in the tapered region caused by silica, which has a higher refractive index (RI) than the surrounding air. However, for applications involving fluidic environments whose RI is close to or higher than that of the silica, the MMF-taper loses its FL collection significantly. Here, to overcome this challenge, we replaced the MMF-taper with an ultra-high numerical aperture (NA) microstructured optical fiber (MOF) which is…
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