铌酸锂
材料科学
制作
包层(金属加工)
光电子学
带宽(计算)
电压
微波食品加热
调制(音乐)
波导管
光子学
光调制器
电子工程
频率调制
光通信
光学
高压
电极
电气工程
光纤
调幅
集成光学
插入损耗
相位调制
作者
Shiva Behzadfar,Fatemeh Karami,Farzaneh Arab Juneghani,Mr. Joseph Haefner,Sasan Fathpour
摘要
Advances in integrated photonics require electro-optic modulators that deliver a wide bandwidth, alongside reduced driving voltage and a minimal footprint. Thin-film lithium niobate (TFLN) provides a strong electro-optic response, making it suitable for such applications. However, lowering the half-wave voltage (Vπ) often comes at the cost of increased radio-frequency (RF) loss or added fabrication complexity. This work presents a compact TFLN modulator design that avoids these trade-offs by simultaneously incorporating three targeted enhancements: a high permittivity cladding to boost RF field confinement, an asymmetric waveguide layout to increase modulation efficiency, and thick electrodes to minimize microwave loss. The proposed structure achieves a voltage-length product (Vπ·L) of 1.34 V·cm and a 3-dB bandwidth beyond 120 GHz, all within a simplified fabrication flow and without compromising optical performance.
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