English

Non-volatile hybrid optical phase shifter driven by a ferroelectric transistor

Applied Physics 2023-10-11 v4 Optics

Abstract

Optical phase shifters are essential elements in photonic integrated circuits (PICs) and function as a direct interface to program the PIC. Non-volatile phase shifters, which can retain information without a power supply, are highly desirable for low-power static operations. Here a non-volatile optical phase shifter is demonstrated by driving a III-V/Si hybrid metal-oxide-semiconductor (MOS) phase shifter with a ferroelectric field-effect transistor (FeFET) operating in the source follower mode. Owing to the various polarization states in the FeFET, multistate non-volatile phase shifts up to 1.25{\pi} are obtained with CMOS-compatible operation voltages and low switching energy up to 3.3 nJ. Furthermore, a crossbar array architecture is proposed to simplify the control of non-volatile phase shifters in large-scale PICs and its feasibility is verified by confirming the selective write-in operation of a targeted FeFET with a negligible disturbance to the others. This work paves the way for realizing large-scale non-volatile programmable PICs for emerging computing applications such as deep learning and quantum computing.

Keywords

Cite

@article{arxiv.2210.06979,
  title  = {Non-volatile hybrid optical phase shifter driven by a ferroelectric transistor},
  author = {Rui Tang and Kouhei Watanabe and Masahiro Fujita and Hanzhi Tang and Tomohiro Akazawa and Kasidit Toprasertpong and Shinichi Takagi and Mitsuru Takenaka},
  journal= {arXiv preprint arXiv:2210.06979},
  year   = {2023}
}
R2 v1 2026-06-28T03:32:56.117Z