English

300 GHz generation based on a Kerr microresonator frequency comb stabilized to a low noise microwave reference

Optics 2021-04-26 v1 Instrumentation and Detectors

Abstract

In this letter, we experimentally demonstrate low noise 300GHz wave generation based on a Kerr microresonator frequency comb operating in soliton regime. The spectral purity of a 10GHz GPS-disciplined dielectric resonant oscillator is transferred to the 300GHz repetition rate frequency of the soliton comb through an optoelectronic phase-locked loop. Two adjacent comb lines beat on a uni-travelling carrier photodiode emitting the 300GHz millimeter-wave signal into a waveguide. In an out-of-loop measurement we have measured the 300GHz power spectral density of phase noise to be -88dBc/Hz, -105dBc/Hz at 10kHz, 1MHz Fourier frequency, respectively. The free-running fractional frequency instability at 300GHz is 1×1091 \times 10^{-9} at 1 second averaging time. Stabilized to a GPS signal, we report an in-loop residual instability of 2×10152 \times 10^{-15} at 1 second which averages down to < 1×10171 \times 10^{-17} at 1000 seconds. Such system provides a promising path to the realization of compact, low power consumption millimeter-wave oscillators with low noise performance for out-of-the-lab applications.

Keywords

Cite

@article{arxiv.2006.09281,
  title  = {300 GHz generation based on a Kerr microresonator frequency comb stabilized to a low noise microwave reference},
  author = {Tomohiro Tetsumoto and Fumiya Ayano and Mark Yeo and Julian Webber and Tadao Nagatsuma and Antoine Rolland},
  journal= {arXiv preprint arXiv:2006.09281},
  year   = {2021}
}

Comments

4 pages, 4 figures