Liang, G, Zeng, Y, Hu, X et al. (7 more authors) (2017) Monolithic semiconductor lasers with dynamically tunable linear-to-circular polarization. ACS Photonics, 4 (3). pp. 517-524. ISSN 2330-4022
Abstract
The ability to control the polarization state of emission from semiconductor lasers is essential for many applications in spectroscopy, imaging, and communications, inter alia, with monolithic integration approaches being extremely beneficial. Although manipulating the output polarization of radiation from a laser can be achieved through a number of approaches, obtaining continuous dynamic control, e.g., from linear to circular, remains extremely challenging. In this paper, we demonstrate that the polarization of terahertz (THz) frequency radiation can be continuously tuned electronically from linear to circular polarization by monolithically integrating in-plane metasurfaces with two phase-locked semiconductor-based THz quantum cascade lasers. Moreover, the metasurfaces—metal antenna arrays in this case—also act as efficient beam collimators, yielding a collimated beam divergence of ∼10° × 10°. Our results, however, have broad applicability to a wide range of semiconductor lasers operating from the visible to THz regions of the electromagnetic spectrum.
Metadata
Item Type: | Article |
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Authors/Creators: |
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Copyright, Publisher and Additional Information: | © 2017 American Chemical Society. This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Photonics, copyright © American Chemical Society, after peer review and technical editing by the publisher. To access the final edited and published work see http://doi.org/10.1021/acsphotonics.6b00703. |
Keywords: | dynamically tunable polarization; metasurface; semiconductor laser; surface emission |
Dates: |
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Institution: | The University of Leeds |
Academic Units: | The University of Leeds > Faculty of Engineering & Physical Sciences (Leeds) > School of Electronic & Electrical Engineering (Leeds) > Pollard Institute (Leeds) |
Funding Information: | Funder Grant number Royal Society WM110032 EPSRC EP/J017671/1 |
Depositing User: | Symplectic Publications |
Date Deposited: | 17 Mar 2017 11:48 |
Last Modified: | 15 Mar 2018 01:40 |
Status: | Published |
Publisher: | American Chemical Society |
Identification Number: | 10.1021/acsphotonics.6b00703 |
Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:113723 |
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