钻石
激光器
材料科学
光电子学
空位缺陷
氮气
光学
冶金
化学
物理
结晶学
有机化学
作者
Xingrui Cheng,Nils Kolja Wessling,Saptarsi Ghosh,Andrew Kirkpatrick,Menno J. Kappers,Yashna Lekhai,Gavin W. Morley,Rachel A. Oliver,Martin D. Dawson,Jason M. Smith,Patrick S. Salter,Michael J. Strain
摘要
Laser-written Nitrogen Vacancy (NV−) centers are combined with transfer-printed GaN micro-lenses to increase fluorescent light collection by reducing total internal reflection at the planar diamond interface. We find a 2x improvement of fluorescent light collection using a 0.95 NA air objective at room temperature, in agreement with FDTD simulations. The nature of the transfer print micro-lenses leads to better performance with lower Numerical Aperture (NA) collection, as confirmed by results with a 0.5NA air objective which show improvement greater than 5x. The approach is attractive for scalable integrated quantum technologies.
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