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采用聚焦离子束铣削制造的具有连续浮雕结构的混合微衍射-微折射透镜,用于单模光纤耦合。

Hybrid microdiffractive-microrefractive lens with a continuous relief fabricated by use of focused-ion-beam milling for single-mode fiber coupling.

作者信息

Fu Y Q, Bryan N K

出版信息

Appl Opt. 2001 Nov 10;40(32):5872-6. doi: 10.1364/ao.40.005872.

Abstract

The design, microfabrication, and testing of a hybrid microdiffractive-microrefractive lens with a continuous relief that is used with a laser diode for monomode fiber coupling is discussed. The hybrid microlens with a diameter as small as 65 mum and a numerical aperture of 0.25 is fabricated directly onto a spherical surface by use of focused-ion-beam milling technology. A focused Ga(+) ion beam is used to mill the continuous relief microstructure at an acceleration voltage of 50 kV. From the test results a coupling efficiency of 71% (-1.49 dB) was achieved at room temperature. A diffraction efficiency of the main diffractive order, -1, was measured to as high as 90.5% at a wavelength of 635 nm. This indicates that the hybrid microlens was suitably designed within the application requirements and satisfactorily manufactured with focused-ion-beam milling.

摘要

讨论了一种用于单模光纤耦合的、具有连续浮雕结构的混合型微衍射 – 微折射透镜的设计、微加工及测试,该透镜与激光二极管配合使用。利用聚焦离子束铣削技术,将直径小至65μm、数值孔径为0.25的混合型微透镜直接制作在球形表面上。使用聚焦的Ga(+)离子束在50 kV的加速电压下铣削出连续浮雕微结构。从测试结果来看,室温下实现了71%(-1.49 dB)的耦合效率。在波长635 nm处,主衍射级次(-1)的衍射效率测得高达90.5%。这表明该混合型微透镜在应用要求范围内设计得当,并通过聚焦离子束铣削成功制造出来。

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