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Laser-Inscribed Diamond Waveguide Resonantly Coupled to Diamond Microsphere

机译:激光雕刻金刚石波导共振耦合到金刚石微球

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摘要

An all-diamond photonic circuit was implemented by integrating a diamond microsphere with a femtosecond-laser-written bulk diamond waveguide. The near surface waveguide was fabricated by exploiting the Type II fabrication method to achieve stress-induced waveguiding. Transverse electrically and transverse magnetically polarized light from a tunable laser operating in the near-infrared region was injected into the diamond waveguide, which when coupled to the diamond microsphere showed whispering-gallery modes with a spacing of 0.33 nm and high-quality factors of 10 . By carefully engineering these high-quality factor resonances, and further exploiting the properties of existing nitrogen-vacancy centers in diamond microspheres and diamond waveguides in such configurations, it should be possible to realize filtering, sensing and nonlinear optical applications in integrated diamond photonics.
机译:通过将钻石微球与飞秒激光写入的整体钻石波导集成在一起,可以实现全钻石光子电路。利用II型制造方法制造近表面波导,以实现应力感应波导。来自在近红外区域工作的可调激光器的横向和横向磁偏振光被注入到金刚石波导中,当与金刚石微球耦合时,该波导显示出间隔为0.33 nm且质量因子为10的耳语画廊模式。 。通过仔细设计这些高质量的因子共振,并进一步利用此类配置在金刚石微球和金刚石波导中现有的氮空位中心的特性,应该有可能在集成金刚石光子学中实现滤波,传感和非线性光学应用。

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