Parra Jorge, Kovylina Miroslavna, Griol Amadeu, Sanchis Pablo
Opt Express. 2024 Nov 4;32(23):40581-40592. doi: 10.1364/OE.537225.
Silicon photonics has become a key platform for photonic integrated circuits (PICs) due to its high refractive index and compatibility with complementary metal-oxide-semiconductor manufacturing. However, the inherent birefringence in silicon waveguides requires efficient polarization management. Here, we report a reconfigurable polarization rotator (PR) using a SbSe/Si waveguide operating at datacom wavelengths (1310 nm), providing nonvolatile switching with zero static power consumption. The polarization conversion relies on the interference of hybrid electric-magnetic (EH) modes, which can be reconfigured by changing the SbSe state between amorphous and crystalline. Our experimental device exhibits a polarization conversion efficiency (PCE) and a polarization extinction ratio (PER) as high as -0.08 dB and 17.65 dB, respectively, in a compact footprint of just 21 µm length. Therefore, the proposed reconfigurable PR offers a compact and energy-efficient solution for polarization management in silicon photonics, with potential applications in data communication networks and emerging applications benefiting from polarization information encodings, such as optical neural networks and quantum computing.
由于其高折射率以及与互补金属氧化物半导体制造工艺的兼容性,硅光子学已成为光子集成电路(PIC)的关键平台。然而,硅波导中固有的双折射需要高效的偏振管理。在此,我们报道了一种使用SbSe/Si波导的可重构偏振旋转器(PR),其工作在数据通信波长(1310 nm),可提供零静态功耗的非易失性切换。偏振转换依赖于混合电磁(EH)模式的干涉,通过改变SbSe在非晶态和晶态之间的状态可对其进行重构。我们的实验装置在仅21 µm长的紧凑尺寸内,分别展现出高达-0.08 dB的偏振转换效率(PCE)和17.65 dB的偏振消光比(PER)。因此,所提出的可重构PR为硅光子学中的偏振管理提供了一种紧凑且节能的解决方案,在数据通信网络以及受益于偏振信息编码的新兴应用(如光学神经网络和量子计算)中具有潜在应用价值。