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Photonic lattice-like waveguides in glass directly written by femtosecond laser for on-chip mode conversion 被引量:6
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作者 Yuying Wang Lijing Zhong +6 位作者 Zhi Chen Dezhi Tan Zaijin Fang Yi Yang Shengzhi Sun Luyun Yang jianrong Qiu 《Chinese Optics Letters》 SCIE EI CAS CSCD 2022年第3期57-61,共5页
We report on a conceptually new type of waveguide in glass by femtosecond laser direct writing,namely,photonic latticelike waveguide(PLLW).The PLLWfs core consists of well-distributed and densified tracks with a sub-m... We report on a conceptually new type of waveguide in glass by femtosecond laser direct writing,namely,photonic latticelike waveguide(PLLW).The PLLWfs core consists of well-distributed and densified tracks with a sub-micron size of 0.62μm in width.Specifically,a PLLW inscribed as hexagonal-shape input with a ring-shape output side was implemented to converse Gaussian mode to doughnut-like mode,and high conversion efficiency was obtained with a low insertion loss of 1.65 dB at 976 nm.This work provides a new freedom for design and fabrication of the refractive index profile of waveguides with sub-micron resolution and broadens the functionalities and application scenarios of femtosecond laser direct-writing waveguides in future 3D integrated photonic systems. 展开更多
关键词 femtosecond laser glass material laser direct-writing waveguide light mode conversion
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