Vertical Fibre Interfacing Interleaved Angled MMI for Thermal-Tuning-Free Wavelength Division (de)Multiplexing and Low-Cost Fibre Packaging

插入损耗 材料科学 耦合损耗 通道间距 栅栏 波分复用 干涉测量 马赫-曾德尔干涉仪 消光比 接口 波长 光电子学 光学 光纤 物理 计算机科学 计算机硬件
作者
Zanyun Zhang,Qian Cheng,Kaixin Zhang,Huan Zhang,Zan Zhang,Beiju Huang,Hongwei Liu,Hongqiang Li,Pingjuan Niu,Hongda Chen
出处
期刊:Journal of Lightwave Technology [Institute of Electrical and Electronics Engineers]
卷期号:39 (19): 6260-6268 被引量:3
标识
DOI:10.1109/jlt.2021.3098020
摘要

We propose and experimentally demonstrate a vertical fibre interfacing interleaved angled MMI (AMMI) for wavelength division (de)multiplexing (WDM) near 1550 nm. This 6-channel WDM device is composed of two 1 × 3 AMMIs and a Mach-Zehnder interferometer (MZI) with an apodized bidirectional grating acting as both vertical optical coupler and 3-dB power splitter. By thoroughly design the bidirectional gratings, a high coupling efficiency of 72.5% and low return loss of −34 dB is obtained by simulation. The AMMI couplers are designed and optimized using the Eigenmode expansion method. For wavelength matching between the MZI and AMMIs, the circuit simulation model of the interleaved AMMI is built by importing the S-parameter matrices of all the optical components extracted from the physical-level simulations. The device was fabricated using the standard CMOS technology and the feature size is compatible with the 193 nm deep-UV lithography. Experimental results obtained without thermal tuning are in good agreement with the simulation results, the device exhibits a small insertion loss (IL) varies between 3.3 and 4.58 dB (including the grating coupling loss), channel spacing of 6 nm, crosstalk (XT) below −20 dB. To investigate the fabrication tolerance, devices on two different chips are measured individually. The results show good consistency in device performance. Also, the fibre misalignment tolerance of the device is experimentally investigated.

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