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基于x切薄膜铌酸锂平台的TM模弯曲波导(特邀)
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作者 高天 甘然丰 +5 位作者 余嘉扬 刘洁 郭昌建 刘柳 《激光与光电子学进展》 CSCD 北大核心 2024年第11期186-191,共6页
由于x切薄膜铌酸锂光集成平台的各向异性,光波导TM模在弯曲过程中容易发生模式杂化并耦合到其他模式,对TM模的弯曲构成了挑战。以400 nm厚、半刻蚀的铌酸锂波导为例,分析了TM0模在不同波导宽度和传输方向下的模式杂化现象,并对其90°... 由于x切薄膜铌酸锂光集成平台的各向异性,光波导TM模在弯曲过程中容易发生模式杂化并耦合到其他模式,对TM模的弯曲构成了挑战。以400 nm厚、半刻蚀的铌酸锂波导为例,分析了TM0模在不同波导宽度和传输方向下的模式杂化现象,并对其90°弯曲传输性能进行仿真。最终得出结论:在特定波导宽度区域(约1.7~2.15μm),TM0模在90°弯曲过程中不会与其他模式发生杂化;当波导宽度小于1.7μm(或大于2.15μm)时,TM0模会与TE1(或TE2)模发生耦合。该结论在实验中也得到了验证。本研究为薄膜铌酸锂波导TM模的弯曲提供了设计思路,可用于该平台偏振调控相关的光集成器件。 展开更多
关键词 集成光学 薄膜铌酸锂 弯曲波导 模式杂化
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Robust thin-film lithium niobate modulator on a silicon substrate with backside holes
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作者 王迈 祁璐 +6 位作者 王浩华 阮子良 耿鑫 龚胜琪 刘柳 《Chinese Optics Letters》 SCIE EI CAS CSCD 2024年第5期17-21,共5页
Recently,Mach–Zehnder modulators based on thin-film lithium niobate have attracted broad interest for their potential for high modulation bandwidth,low insertion loss,high extinction ratio,and high modulation efficie... Recently,Mach–Zehnder modulators based on thin-film lithium niobate have attracted broad interest for their potential for high modulation bandwidth,low insertion loss,high extinction ratio,and high modulation efficiency.The periodic capacitively loaded traveling-wave electrode is optimally adopted for ultimate high-performances in this type of modulator.However,such an electrode structure on a silicon substrate still suffers from the velocity mismatch and substrate leakage loss for microwave signals.Here,we introduce a thin-film lithium niobate modulator structure using this periodic capacitively loaded electrode on a silicon substrate.Backside holes in the silicon substrate are prepared to solve robustly the above difficulties.The fabricated device exhibits an insertion loss of 0.9 dB,a halfwave-voltage–length product of 2.18 V·cm,and an ultra-wide bandwidth well exceeding 67 GHz for a 10-mm-long device.Data transmissions with rates up to 112 Gb/s are demonstrated.The proposed structure and fabrication strategy are compatible for other types of monolithic and heterogeneous integrated thin-film lithium niobate modulators on a silicon substrate. 展开更多
关键词 lithium niobate electro-optic modulator high bandwidth backside holes robust structure
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