Home
Scholarly Works
Integrated circular optical phased array
Journal article

Integrated circular optical phased array

Abstract

Existing OPAs are typically based on 2D rectangular arrays or 1D linear arrays. Both approaches present a limited field-of-view (FOV) due to the presence of the grating lobes when the element spacing is larger than λ/2. To address the need for an increased steering range, we propose a new design strategy of an OPA system utilizing a 2D circular phased array, with a substantially increased FOV. We present a circular OPA using a demonstrated antenna element design, with an 820-element array. A steering range ΩSR calculated as a solid angle of 0.51π sr, and an angular beamwidth of 0.22°, was achieved. The array exhibits a sidelobe suppression larger than 10 dB, and a FOV of 2π sr. Although the performance is limited by the far field pattern of the individual antenna we chose, our circular OPA achieved, to the best of our knowledge, the largest steering range reported to date compared to the state-of-the-art integrated optical phased arrays reported in literature.

Authors

Liu Q; Smy T; Atieh A; Cheben P; Sánchez-Postigo A; Ye WN

Journal

EPJ Web of Conferences, Vol. 255, ,

Publisher

EDP Sciences

Publication Date

January 1, 2021

DOI

10.1051/epjconf/202125501004

ISSN

2101-6275

Contact the Experts team