Wang Liangliang, Zhang Jiashun, An Junming, Chen Jun, Sun Bingli, Zhou Tianhong, Yin Xiaojie, Wang Yue, Wu Yuanda
Opt Express. 2023 Nov 6;31(23):37829-37842. doi: 10.1364/OE.504457.
With the rapid development of the backbone network rates, there has been a gradual increase in channel spacing and bandwidth. The C&L band ultra-broad bandwidth array waveguide gratings (AWG) of 60-channel 100 GHz channel spacing are designed and fabricated based on silica waveguide. A new parabolic design is used to achieve ultra-broad bandwidth and good spectrum. For the C band ultra-broad bandwidth AWG, the peak insertion loss, uniformity, 0.5 dB bandwidth, 1 dB bandwidth and 3 dB bandwidth are 2.98 dB, 0.36 dB, 0.614 nm, 0.721 nm and 0.937 nm, respectively. For the L band ultra-broad bandwidth AWG, the peak insertion loss, uniformity, 0.5 dB bandwidth, 1 dB bandwidth and 3 dB bandwidth are 2.91 dB, 0.27 dB, 0.560 nm, 0.665 nm and 0.879 nm, respectively. To ensure ultra-broad bandwidth AWG operation at different temperatures, a temperature control circuit is integrated into the packaging design. It has been observed that the performances remain virtually unchanged within the temperature range of -15 to 65 degree. The ultra-broadband AWGs have been successfully tested to transmit 96 Gbaud signals and can be applied to 600 G/800 G backbone network transmission. By using the C&L ultra-broad bandwidth AWGs of 60-channel 100 GHz channel spacing, the total transmission speed over a single-mode fiber can reach 72Tbps/96Tbps.
随着骨干网速率的快速发展,信道间距和带宽逐渐增大。基于二氧化硅波导设计并制作了60通道、100GHz信道间距的C波段和L波段超宽带阵列波导光栅(AWG)。采用一种新的抛物线设计来实现超宽带宽和良好的光谱特性。对于C波段超宽带AWG,其峰值插入损耗、均匀性、0.5dB带宽、1dB带宽和3dB带宽分别为2.98dB、0.36dB、0.614nm、0.721nm和0.937nm。对于L波段超宽带AWG,其峰值插入损耗、均匀性、0.5dB带宽、1dB带宽和3dB带宽分别为2.91dB、0.27dB、0.560nm、0.665nm和0.879nm。为确保超宽带AWG在不同温度下工作,在封装设计中集成了温度控制电路。据观察,在-15至65摄氏度的温度范围内,性能几乎保持不变。超宽带AWG已成功测试传输96Gbaud信号,并可应用于600G/800G骨干网传输。通过使用60通道、100GHz信道间距的C波段和L波段超宽带AWG,单模光纤上的总传输速度可达到72Tbps/96Tbps。