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三维中红外硫属玻璃光子集成电路。

Three-dimensional mid-infrared photonic circuits in chalcogenide glass.

机构信息

Scottish Universities Physics Alliance (SUPA), School of Engineering and Physical Sciences, Heriot Watt University, Edinburgh, United Kingdom.

出版信息

Opt Lett. 2012 Feb 1;37(3):392-4. doi: 10.1364/OL.37.000392.

Abstract

We report the fabrication of single-mode buried channel waveguides for the whole mid-IR transparency range of chalcogenide sulphide glasses (λ ≤ 11 μm), by means of direct laser writing. We have explored the potential of this technology by fabricating a prototype three-dimensional three-beam combiner for future application in stellar interferometry that delivers a monochromatic interference visibility of 99.89% at 10.6 μm and an ultrahigh bandwidth (3-11 μm) interference visibility of 21.3%. These results demonstrate that it is possible to harness the whole transparency range offered by chalcogenide glasses on a single on-chip instrument by means of direct laser writing, a finding that may be of key significance in future technologies such as astrophotonics and biochemical sensing.

摘要

我们通过直接激光写入的方法制造了用于整个中红外硫属化物玻璃透明范围(λ≤11μm)的单模埋层波导。我们通过制造一个用于未来在恒星干涉测量中的三维三光束组合器的原型,探索了这项技术的潜力,该组合器在 10.6μm 处提供了 99.89%的单色干涉可见度和超宽带(3-11μm)干涉可见度 21.3%。这些结果表明,通过直接激光写入,有可能在单个片上仪器上利用硫属化物玻璃提供的整个透明范围,这一发现可能在未来的技术中具有关键意义,如天文光子学和生化传感。

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