Manufacturability and performance of microdisk resonators from the AIM Photonics foundry

IF 1.1 Q4 OPTICS
Kerry Nierenberg, Shelbi Jenkins, Erfan Fard, Kyung-Jo Kim, Sasaan Showghi, Robert Norwood
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引用次数: 0

Abstract

The field of integrated photonics relies heavily on foundries to produce not only novel technologies, but also reliable ones. Examining the output of complementary metal-oxide-semiconductor (CMOS) foundries such as that affiliated with the AIM Photonics partnership provides valuable insight into the manufacturability of integrated photonic telecommunications devices when produced in large numbers. We present an analysis of the passive performance of numerous silicon microdisk resonators. At ambient temperature, the resonators exhibit on average insertion loss of ∼6 dB, a free spectral range of ∼25 nm, and quality factors of Q > 8.3 × 10 3 . We also report a study of temperature dependence on the resonant wavelength of the devices. Our characterization of these resonators demonstrates reproducibility of qualities related to accuracy in fabrication, as well as in experimental measurement.
AIM Photonics代工厂微盘谐振器的可制造性和性能
集成光子学领域在很大程度上依赖于代工厂,不仅要生产新颖的技术,还要生产可靠的技术。检查互补金属氧化物半导体(CMOS)代工厂的产量,例如AIM Photonics合作伙伴关系提供了大量生产集成光子通信设备时的可制造性的宝贵见解。本文分析了多种硅微盘谐振器的无源性能。在环境温度下,谐振器的平均插入损耗为~ 6 dB,自由光谱范围为~ 25 nm,质量因子为Q >8.3 × 10我们还报道了器件谐振波长对温度依赖性的研究。我们对这些谐振器的表征证明了与制造精度以及实验测量相关的质量的再现性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.50
自引率
0.00%
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