Hiraoka Tomoki, Inose Yuta, Arikawa Takashi, Ito Hiroshi, Tanaka Koichiro
Department of Physics, Graduate School of Science, Kyoto University, Kyoto, Sakyo-ku, 606-8502, Japan.
PRESTO, Japan Science and Technology Agency (JST), 4-1-8 Honcho, Kawaguchi, 332-0012, Japan.
Nat Commun. 2022 Jun 29;13(1):3740. doi: 10.1038/s41467-022-31071-3.
Optical frequency combs in the terahertz frequency range are long-awaited frequency standards for spectroscopy of molecules and high-speed wireless communications. However, a terahertz frequency comb based on a low-cost, energy-efficient, and room-temperature-operating device remains unavailable especially in the frequency range of 0.1 to 3 THz. In this paper, we show that the resonant-tunneling-diode (RTD) oscillator can be passively mode-locked by optical feedback and generate a terahertz frequency comb. The standard deviation of the spacing between the comb lines, i.e., the repetition frequency, is reduced to less than 420 mHz by applying external bias modulation. A simulation model successfully reproduces the mode-locking behavior by including the nonlinear capacitance of RTD and multiple optical feedback. Since the mode-locked RTD oscillator is a simple semiconductor device that operates at room temperature and covers the frequency range of 0.1 to 2 THz (potentially up to 3 THz), it can be used as a frequency standard for future terahertz sensing and wireless communications.
太赫兹频段的光学频率梳是分子光谱学和高速无线通信中人们期待已久的频率标准。然而,基于低成本、高能效且能在室温下工作的设备的太赫兹频率梳仍然无法获得,尤其是在0.1至3太赫兹的频率范围内。在本文中,我们展示了共振隧穿二极管(RTD)振荡器可以通过光反馈被被动锁模,并产生太赫兹频率梳。通过施加外部偏置调制,梳状谱线之间的间距(即重复频率)的标准偏差降低到小于420毫赫兹。一个模拟模型通过纳入RTD的非线性电容和多重光反馈成功再现了锁模行为。由于锁模RTD振荡器是一种简单的半导体器件,能在室温下工作且覆盖0.1至2太赫兹的频率范围(潜在可达3太赫兹),它可作为未来太赫兹传感和无线通信的频率标准。