Huang Tian Li, Zheng Ao Ling, Dong Jian Ji, Gao Ding Shan, Zhang Xin Liang
Opt Lett. 2015 Dec 1;40(23):5614-7. doi: 10.1364/OL.40.005614.
We experimentally demonstrate a terahertz-bandwidth photonic differentiator employing a silicon-on-insulator directional coupler. The integrated waveguide coupler with two identical paralleled strip waveguides achieves a first-order differentiator when full energy coupling is met from one waveguide to another. The integrated waveguide coupler can offer different operation bandwidths by changing the length and gap of the strip waveguides. Due to the large 3 dB bandwidth of the directional coupler, we implement the first differentiator with an operation bandwidth of 1.25 THz. The performance of this photonic differentiator is tested using Gaussian-like pulses with a pulsewidth of 2.8 ps, 4 ps, 6 ps, 8 ps, and 10 ps, respectively. The differentiation processing errors and relative energy efficiency are also discussed. This silicon chip may have potential applications in integrated photonic computing circuits with sub-picosecond pulses.
我们通过实验展示了一种采用绝缘体上硅定向耦合器的太赫兹带宽光子微分器。这种具有两个相同平行带状波导的集成波导耦合器,在满足从一个波导到另一个波导的全能量耦合时,可实现一阶微分器。通过改变带状波导的长度和间隙,该集成波导耦合器能够提供不同的工作带宽。由于定向耦合器具有较大的3 dB带宽,我们实现了一个工作带宽为1.25 THz的一阶微分器。分别使用脉宽为2.8 ps、4 ps、6 ps、8 ps和10 ps的类高斯脉冲对该光子微分器的性能进行了测试。同时还讨论了微分处理误差和相对能量效率。这种硅芯片在具有亚皮秒脉冲的集成光子计算电路中可能具有潜在应用。