Compact Transverse Electric Silicon-on-Insulator Mode Converter for Mode-Division Multiplexer

被引:0
|
作者
Sharaf M.H. [1 ]
El-Mashade M.B. [1 ]
Emran A.A. [1 ]
机构
[1] Electrical Engineering Department, Faculty of Engineering, Al-Azhar University, Cairo
关键词
guided waves; hybrid modes; integrated optical devices; integrated optics; perturbation theory; silicon-on-insulator waveguide; WDM & MDM systems;
D O I
10.24425-ijet.2022.139878/965
中图分类号
学科分类号
摘要
On-chip optical-interconnect technology emerges as an attractive approach due to its ultra-large bandwidth and ultra-low power consumption. Silicon-on-insulator (SOI) wire waveguides, on the other hand, have been identified to potentially replace copper wires for intra-chip communication. To take advantage of the wide bandwidth of SOI waveguides, wavelength-division multiplexing (WDM) has been implemented. However, WDM have inherent drawbacks. Mode-division multiplexing (MDM) is a viable alternative to WDM in MIMO photonic circuits on SOI as it requires only one carrier wavelength to operate. In this vein, mode converters are key components in on-chip MDM systems. The goal of this paper is to introduce a transverse electric mode converter. The suggested device can convert fundamental transverse electric modes to first-order transverse electric ones and vice versa. It is based on small material perturbation which introduces gradual coupling between different modes. This device is very simple and highly compact; the size of which is 3 µm2. Mathematical expressions for both the insertion loss and crosstalk are derived and optimized for best performance. In addition, three-dimensional finite-difference time-domain (3D-FDTD) simulations are performed in order to verify the mathematical model of the device. Our numerical results reveal that the proposed device has an insertion loss of 1.2 dB and a crosstalk of 10.1 dB. The device's insertion loss can be decreased to 0.95 dB by adding tapers to its material perturbation. © The Author(s)
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页码:275 / 280
页数:5
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