Nishimoto Kenji, Minoshima Kaoru, Yasui Takeshi, Kuse Naoya
Opt Express. 2020 Jun 22;28(13):19295-19303. doi: 10.1364/OE.395436.
Optical frequency combs generated from microresonators (especially microresonator soliton combs) have been attracting significant attentions because of the potential to be fully chip-scale. Among various promising applications of soliton combs, coherent optical communications and mm/THz wireless communications require low phase noise of the comb modes and low relative phase noise between the comb modes, respectively. Here, we measure the phase noise of a soliton comb, investigating how the thermorefractive noise of a microresonator influences on the phase noise. We observe the quadratic increase of the phase noise of the comb modes, as the comb mode number, counted from the wavelength of a pump cw laser, increases. In addition, we measure the relative phase noise between the comb modes, showing less influence of the phase noise of pump cw lasers by comparing soliton combs generated from pump cw lasers with low and large phase noise.
由微谐振器产生的光频梳(尤其是微谐振器孤子光频梳)因其具有完全芯片级规模的潜力而备受关注。在孤子光频梳的各种有前景的应用中,相干光通信和毫米波/太赫兹无线通信分别需要梳状模式的低相位噪声和梳状模式之间的低相对相位噪声。在此,我们测量了孤子光频梳的相位噪声,研究微谐振器的热折射噪声如何影响相位噪声。我们观察到,从泵浦连续波激光器的波长开始计数,随着梳状模式数量的增加,梳状模式的相位噪声呈二次方增加。此外,我们测量了梳状模式之间的相对相位噪声,通过比较由具有低相位噪声和高相位噪声的泵浦连续波激光器产生的孤子光频梳,结果表明泵浦连续波激光器的相位噪声影响较小。