Terahertz Oscillator Chips Backside-coupled to Unclad Microphotonics
Optics
2022-06-17 v1 Applied Physics
Abstract
Terahertz technology is largely dependent upon planar on-chip antennas that radiate downwards through the substrate, and so an effective means to interface these antennas with integrated waveguides is an attractive prospect. We present a viable methodology for backside coupling between a terahertz oscillator chip and a broadband all-intrinsic-silicon dielectric waveguide. Our investigation employs resonant tunneling diodes as compact two-terminal electronic terahertz oscillators, and terahertz waves are observed from 270 GHz to 409 GHz. The fact that this power is accessed via a curved length of silicon waveguide validates successful backside coupling.
Cite
@article{arxiv.2206.08184,
title = {Terahertz Oscillator Chips Backside-coupled to Unclad Microphotonics},
author = {Daniel Headland and Yosuke Nishida and Xiongbin Yu and Masayuki Fujita and Tadao Nagatsuma},
journal= {arXiv preprint arXiv:2206.08184},
year = {2022}
}
Comments
10 pages, 10 figures