论文标题

低相位噪声THZ从纤维引用的Kerr微孔子梳子中产生

Low phase noise THz generation from a fiber-referenced Kerr microresonator soliton comb

论文作者

Kuse, Naoya, Nishimoto, Kenji, Tokizane, Yu, Okada, Shota, Navickaite, Gabriele, Geiselmann, Michael, Minoshima, Kaoru, Yasui, Takeshi

论文摘要

通过微波的频率 - 刺激产生的THZ振荡器在实现低相位噪声方面面临困难。基于光子学的技术,通过光电极转换将光学两种音调转换为THZ波,如果两种音调之间的相对相位噪声得到很好的抑制,则可以有望。在这里,具有低相位噪声的THZ($ \ $ \ $ 560 GHz)是由频率稳定的,耗散的Kerr微孔子Soliton Comb提供的。梳子的重复频率稳定在两波长的延迟自生尼干涉仪中,从而大大降低了THZ波的相位噪声。还展示了一种测量技术,以表征THZ波的相位噪声超出频率 - 多层微波炉的极限,显示了THZ波的上相噪声与任何其他光子THZ振荡器(> 300 GHz)的上相噪声。

THz oscillators generated via frequency-multiplication of microwaves are facing difficulty in achieving low phase noise. Photonics-based techniques, in which optical two tones are translated to a THz wave through opto-electronic conversion, are promising if the relative phase noise between the two tones is well suppressed. Here, a THz ($\approx$ 560 GHz) wave with a low phase noise is provided by a frequency-stabilized, dissipative Kerr microresonator soliton comb. The repetition frequency of the comb is stabilized to a long fiber in a two-wavelength delayed self-heterodyne interferometer, significantly reducing the phase noise of the THz wave. A measurement technique to characterize the phase noise of the THz wave beyond the limit of a frequency-multiplied microwave is also demonstrated, showing the superior phase noise of the THz wave to any other photonic THz oscillators (> 300 GHz).

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