Bhandari Bishal, Im Chul-Soon, Sapkota Om Raj, Lee Sang-Shin
Opt Lett. 2020 Nov 1;45(21):5974-5977. doi: 10.1364/OL.405031.
The implementation of a polarization beam splitter (PBS) on a silicon nitride platform remains challenging owing to its relatively low index. We therefore propose a silicon nitride PBS that exploits serially cascaded asymmetric directional couplers (ADCs), leading to a high polarization extinction ratio (PER) over a broad bandwidth. The ADC spatially routes incident light through polarization-selective mode coupling under a small footprint of 112 µm. The proposed PBS does not require an active phase control. It is thus effectively realized via a single-step lithography process. The measured transverse-electric and transverse-magnetic PERs were determined to be above 23 dB and 10 dB over an 80-nm bandwidth, respectively, spanning =1520-1600. The proposed device is thus anticipated to play a key role in providing polarization diversity in photonic-integrated circuits.
由于其折射率相对较低,在氮化硅平台上实现偏振分束器(PBS)仍然具有挑战性。因此,我们提出了一种利用串联级联非对称定向耦合器(ADC)的氮化硅PBS,在宽带宽上实现高偏振消光比(PER)。ADC通过偏振选择模式耦合在112 µm的小尺寸下对入射光进行空间路由。所提出的PBS不需要有源相位控制。因此,它可以通过单步光刻工艺有效实现。在1520 - 1600的80 nm带宽上,测得的横向电场和横向磁场PER分别确定为高于23 dB和10 dB。因此,预计所提出的器件将在光子集成电路中提供偏振分集方面发挥关键作用。