Yan Xianglei, Zou Xihua, Pan Wei, Yan Lianshan, Azaña José
Opt Lett. 2018 Jan 15;43(2):283-286. doi: 10.1364/OL.43.000283.
We propose a fully digital programmable optical frequency comb (OFC) generation scheme based on binary phase-sampling modulation, wherein an optimized bit sequence is applied to phase modulate a narrow-linewidth light wave. Programming the bit sequence enables us to tune both the comb spacing and comb-line number (i.e., number of comb lines). The programmable OFCs are also characterized by ultra-flat spectral envelope, uniform temporal envelope, and stable bias-free setup. Target OFCs are digitally programmed to have 19, 39, 61, 81, 101, or 201 comb lines and to have a 100, 50, 20, 10, 5, or 1 MHz comb spacing. As a demonstration, a scanning-free temperature sensing system using a proposed OFC with 1001 comb lines was also implemented with a sensitivity of 0.89°C/MHz.
我们提出了一种基于二进制相位采样调制的全数字可编程光学频率梳(OFC)生成方案,其中应用优化的比特序列对窄线宽光波进行相位调制。通过对比特序列进行编程,我们能够调整梳齿间距和梳齿线数量(即梳齿线的数量)。可编程OFC还具有超平坦的光谱包络、均匀的时间包络和稳定的无偏置设置。目标OFC通过数字编程设置为具有19、39、61、81、101或201条梳齿线,并具有100、50、20、10、5或1 MHz的梳齿间距。作为演示,还实现了一个使用具有1001条梳齿线的所提出的OFC的无扫描温度传感系统,其灵敏度为0.89°C/MHz。