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Measuring the refractive index of optical adhesives at cryogenic temperatures

机译:在低温温度下测量光学粘合剂的折射率

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The development of photonic quantum information technologies requires research on the properties of optical adhesives at cryogenic temperatures. In the process of developing microfiber (MF)-coupled superconducting nanowire single-photon detectors (SNSPDs), we invented a cryogenic-temperature refractive index (RI) measurement method based on a kind of MF device. The device was put into the cryostat to observe the variance of MF transmittance with temperature. Then an RI-temperature relationship was established through the correspondence between the confinement conditions of MFs of various diameters in an optical adhesive-MgF2 environment and transmittance-temperature curves. Using this method., we analyzed the thermal-optical properties of a commercial fluorinated acrylic optical adhesive and obtained the RI values of the adhesive at various temperatures. The results were successfully applied in the development of broadband and high-efficiency MF-coupled SNSPDs. (C) 2020 Optical Society of America
机译:光子量子信息技术的开发需要研究低温温度下光学粘合剂的性质。在开发微纤维(MF) - 耦合的超导纳米线单光子检测器(SNSPD)的过程中,我们发明了一种基于一种MF器件的低温折射率(RI)测量方法。将该设备放入低温恒温器以观察MF透射率与温度的方差。然后通过在光学粘合剂-MGF2环境和透射率 - 温度曲线之间的各种直径的MFS的限制条件之间的对应关系建立RI温关系。使用该方法。,我们分析了商业氟化丙烯酸光学粘合剂的热光学性质,并在各种温度下获得了粘合剂的RI值。结果成功地应用于宽带和高效MF耦合SNSPDS的开发。 (c)2020美国光学学会

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    《Applied optics》 |2020年第7期|共5页
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