Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

III-nitride nanowire array based 1.3μm monolithic photonic integrated circuit on (001) silicon substrate

Not Accessible

Your library or personal account may give you access

Abstract

A monolithic photonic integrated circuit with a laser, waveguide and detector on (001) silicon can be used as an optical communication link in silicon photonics. III-nitride nanowire arrays can be grown catalyst-free on (001) silicon, relatively free of extended defects [1]. The nanowires have superior characteristics compared to equivalent planar layers, e.g. lower piezoelectric polarization, higher internal quantum efficiency etc. The nanowire diameter and density can be varied over wide ranges by tuning the growth parameters. InxGa1-xN disks can be inserted in these nanowires and the In composition x in the disks can be varied from 5 to 100% [2]. Quantum dot formation has been observed in these InGaN disks, which provide 3-dimensional quantum confinement [3]. The nanowires can also be selectively doped to form p-n junctions. We have employed such nanowire arrays to demonstrate the first monolithically integrated active photonic circuit on (001)silicon, composed of a diode laser emitting at 1.3μm, a dielectric waveguide, and a photodiode with high responsivity at 1.3μm.

© 2017 Optical Society of America

PDF Article
More Like This
InGaN/GaN Dot-in-Nanowire Lasers on Silicon

Pallab Bhattacharya and Arnab Hazari
LTu1H.2 Laser Science (LS) 2016

Electrically Injected InGaN/GaN Disk-in-Nanowire Lasers Monolithically Grown on (001) Silicon

Thomas Frost, Shafat Jahangir, Ethan Stark, and Pallab Bhattacharya
AW4A.3 Asia Communications and Photonics Conference (ACP) 2014

Silicon nitride tri-layer 1×3 couplers with arbitrary splitting ratio for 3D photonic integrated circuits

Kuanping Shang, Shaoqi Feng, Guangyao Liu, Siwei Li, and S. J. B. Yoo
Th3E.1 Optical Fiber Communication Conference (OFC) 2017

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.