Piezo-optomechanical cantilever modulators for VLSI visible photonics
Abstract
Visible-wavelength very large-scale integration (VLSI) photonic circuits have potential to play important roles in quantum information and sensing technologies. The realization of scalable, high-speed, and low-loss photonic mesh circuits depends on reliable and well-engineered visible photonic components. Here we report a low-voltage optical phase shifter based on piezo-actuated mechanical cantilevers, fabricated on a CMOS compatible, 200 mm wafer-based visible photonics platform. We show linear phase and amplitude modulation with 6 V-cm in differential operation, -1.5 dB to -2 dB insertion loss, and up to 40 dB contrast in the 700 nm - 780 nm range. By adjusting selected cantilever parameters, we demonstrate a low-displacement and a high-displacement device, both exhibiting a nearly flat frequency response from DC to a peak mechanical resonance at 23 MHz and 6.8 MHz respectively, which through resonant enhancement of Q~40, further decreases the operating voltage down to 0.15 V-cm.
Cite
@article{arxiv.2201.12447,
title = {Piezo-optomechanical cantilever modulators for VLSI visible photonics},
author = {Mark Dong and David Heim and Alex Witte and Genevieve Clark and Andrew J. Leenheer and Daniel Dominguez and Matthew Zimmermann and Y. Henry Wen and Gerald Gilbert and Dirk Englund and Matt Eichenfield},
journal= {arXiv preprint arXiv:2201.12447},
year = {2022}
}
Comments
13 pages, 6 figures, 3 supplementary figures