English

A $\chi^{(2)}$-based AlGaAs Phase Sensitive Amplifier with Record Gain, Noise and Sensitivity

Optics 2021-12-22 v1 Applied Physics

Abstract

Phase sensitive amplifiers (PSAs) have the potential to empower substantial advances in emerging generations of optical communication systems as well as classical and quantum on-chip signal processing. The core building block of a PSA is a nonlinear medium. While the second-order nonlinearity (χ(2)\chi^{(2)}) is stronger than the third-order nonlinearity (χ(3)\chi^{(3)}), it is used less often in semiconductors for parametric amplification owing to the challenges of effectively phase matching the interacting waves as well as two-photon absorption of the pump. In this work, we demonstrate the successful design, fabrication, and characterization of the first χ(2)\chi^{(2)}-based semiconductor PSA using an efficient phase matching approach and a pulsed pump, based on an aluminium gallium arsenide (AlGaAs) waveguide platform. Non-centrosymmetric semiconductors such as AlGaAs offer appreciable χ(2)\chi^{(2)}. Such waveguides also achieve more than one order of magnitude greater pump field confinement when compared to other materials with large χ(2)\chi^{(2)} such as Periodically Poled Lithium Niobate (PPLN). Our AlGaAs PSA achieves an on-chip in-phase gain, a sensitivity of 0.005 photons per pulse, and approaches theoretical minimal noise figure (NF) of 0~dB. With the capability of operating on signal states with sub-single photons per pulse, our PSA could usher in a new era of on-chip quantum circuits.

Keywords

Cite

@article{arxiv.2112.10822,
  title  = {A $\chi^{(2)}$-based AlGaAs Phase Sensitive Amplifier with Record Gain, Noise and Sensitivity},
  author = {Zhizhong Yan and Haoyu He and Han Liu and Meng Lon Iu and Osman Ahemd and Eric Chen and Phillip Stewart Blakey and Youichi Akasaka and Tadashi Ikeuchi and Amr S Helmy},
  journal= {arXiv preprint arXiv:2112.10822},
  year   = {2021}
}
R2 v1 2026-06-24T08:25:15.481Z