Cammarata Simone, Fontana Andrea, Kaplan Ali Emre, Cornia Samuele, Dao Thu Ha, Lacava Cosimo, Demontis Valeria, Iadanza Simone, Vitali Valerio, De Matteis Fabio, Pedreschi Elena, Magazzù Guido, Toncelli Alessandra, Spinella Franco, Saponara Sergio, Gunnella Roberto, Rossella Francesco, Salamon Andrea, Bellani Vittorio
Istituto Nazionale di Fisica Nucleare (INFN) Sezione di Pisa, 56127 Pisa, Italy.
Dipartimento di Ingegneria dell'Informazione, Università di Pisa, 56122 Pisa, Italy.
Materials (Basel). 2022 Dec 7;15(24):8739. doi: 10.3390/ma15248739.
We numerically investigated the use of graphene nanoribbons placed on top of silicon-on-insulator (SOI) strip waveguides for light polarization control in silicon photonic-integrated waveguides. We found that two factors mainly affected the polarization control: the graphene chemical potential and the geometrical parameters of the waveguide, such as the waveguide and nanoribbon widths and distance. We show that the graphene chemical potential influences both TE and TM polarizations almost in the same way, while the waveguide width tapering enables both TE-pass and TM-pass polarizing functionalities. Overall, by increasing the oxide spacer thickness between the silicon waveguide and the top graphene layer, the device insertion losses can be reduced, while preserving a high polarization extinction ratio.
我们通过数值模拟研究了将石墨烯纳米带置于绝缘体上硅(SOI)条形波导顶部,用于硅光子集成波导中的光偏振控制。我们发现有两个因素主要影响偏振控制:石墨烯化学势以及波导的几何参数,如波导和纳米带的宽度与间距。我们表明,石墨烯化学势对TE和TM偏振的影响几乎相同,而波导宽度渐变可实现TE通和TM通两种偏振功能。总体而言,通过增加硅波导与顶部石墨烯层之间的氧化物间隔层厚度,可以降低器件的插入损耗,同时保持较高的偏振消光比。