光子学
材料科学
联轴节(管道)
数值孔径
光电子学
光学
光纤
极化(电化学)
光子集成电路
电子工程
单模光纤
传输(电信)
电介质
模耦合
GSM演进的增强数据速率
光场
光功率
光学滤波器
光子晶体光纤
耦合模理论
光纤分路器
光开关
耦合损耗
作者
Shiru Song,Zilong Tian,Yalin yao,He Cui,Xuan Li,Li Yin,Taolin Liu,Tian Jiang
摘要
Achieving efficient optical power transfer between photonic components has been a critical challenge across various areas in photonics and optoelectronics. Particularly, establishing effective optical coupling between high numerical aperture (NA) photonic integrated circuit (PIC) and conventional single-mode fiber (SMF) remains a crucial requirement for ensuring reliable optical signal transmission in modern photonic systems. This paper presents an innovative metasurface-based fiber coupling solution, leveraging two-dimensional subwavelength nanostructure to achieve precise mode field matching between high-NA and standard SMFs. By utilizing the excellent capability of metasurface in amplitude, phase and polarization modulation, numerical simulations show a record coupling efficiency of 99.1% at the wavelength of 1550nm. Significantly, the metasurface-based SMF coupler achieves micrometer scale longitudinal packaging dimensions in contrast to conventional edge coupling schemes, offering a transformative solution for implementing integrated photonic packaging. Further simulation analysis of the impact of lateral and longitudinal alignment offsets on coupling efficiency provides important design basis for tolerance control in actual packaging processes.
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