Benjamin G. LeeB.A. SmallKeren BergmanQianfan XuMichal Lipson
The effects of a micrometer-scale silicon ring resonator with a FWHM of 0.078 nm (9.6 GHz) on a nonreturn to zero amplitude-modulated optical signal with a modulation rate of 10 Gbps are experimentally investigated. By transmitting the optical signal through the device, significant spectral distortion and side band attenuation is introduced, as characterized by amplitude Bode plots, and a power penalty of 0.8 dB is observed. Carrier wavelengths within the transmission resonance, but detuned from the center wavelength, are investigated as well. Numerical simulations further support the experimental results.
Alexander GondarenkoJacob S. LevyMichal Lipson
B.A. SmallBenjamin G. LeeKeren BergmanQianfan XuJagat ShakyaMichal Lipson
Mehmet ArasAleksandr BibermanNoam OphirAaron SteinSerdar KocamanRohit ChatterjeeMingbin YuDim‐Lee KwongKeren BergmanChee Wei Wong
闫树斌 Yan Shubin安盼龙 An Panlong郑永秋 Zheng Yongqiu李小枫 LI Xiao-feng赵瑞娟 Zhao Ruijuan张成飞 ZHANG Cheng-fei薛晨阳 Xue Chenyang刘俊 Liu Jun