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首页> 外文期刊>Optics Letters >Writing waveguides inside monolithic crystalline silicon with nanosecond laser pulses
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Writing waveguides inside monolithic crystalline silicon with nanosecond laser pulses

机译:用纳秒激光脉冲在单片晶体硅中写入波导

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摘要

Direct three-dimensional (3D) laser writing of waveguides is highly advanced in a wide range of bandgap materials, but has no equivalent in silicon so far. We show that nanosecond laser single-pass irradiation is capable of producing channel micro-modifications deep into crystalline silicon. With an appropriate shot overlap, a relative change of the refractive index exceeding 10-3 is obtained without apparent nonuniformity at the micrometer scale. Despite the remaining challenge of propagation losses, we show that the created structures form, to the best of our knowledge, the first laser-written waveguides in the bulk of monolithic silicon samples. This paves the way toward the capability of producing 3D architectures for the rapidly growing field of silicon photonics. (C) 2016 Optical Society of America
机译:在各种带隙材料中,波导的直接三维(3D)激光写入技术都非常先进,但是到目前为止,硅的等效性尚不高。我们显示纳秒激光单程辐射能够产生深深进入晶体硅的通道微修饰。通过适当的散粒重叠,在微米尺度上获得了超过10-3的折射率的相对变化而没有明显的不均匀性。尽管仍然存在传播损耗方面的挑战,但据我们所知,我们证明了所形成的结构是在整体单片硅样品中形成的第一批激光写入波导。这为快速发展的硅光子学领域生产3D架构的能力铺平了道路。 (C)2016美国眼镜学会

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