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Mid-infrared integrated photonics in silicon and germanium

Mid-infrared integrated photonics in silicon and germanium
Mid-infrared integrated photonics in silicon and germanium
Due to their good photonic and electronic properties, silicon and germanium have been intensively researched for the last several years for applications in the near-infrared wavelength range, mainly for tele- and data-communications. As they are both transparent in the mid-infrared, there has been a recent interest in investigating integrated photonic circuits for a host of potential applications in this wide wavelength range, particularly for sensing. In this talk, mid-IR group IV material platforms and realization of several photonic devices will be discussed.
Mashanovich, Goran
c806e262-af80-4836-b96f-319425060051
Mashanovich, Goran
c806e262-af80-4836-b96f-319425060051

Mashanovich, Goran (2017) Mid-infrared integrated photonics in silicon and germanium. European Conference on Integrated Optics (ECIO), Eindhoven, Netherlands. 03 - 05 Apr 2017.

Record type: Conference or Workshop Item (Paper)

Abstract

Due to their good photonic and electronic properties, silicon and germanium have been intensively researched for the last several years for applications in the near-infrared wavelength range, mainly for tele- and data-communications. As they are both transparent in the mid-infrared, there has been a recent interest in investigating integrated photonic circuits for a host of potential applications in this wide wavelength range, particularly for sensing. In this talk, mid-IR group IV material platforms and realization of several photonic devices will be discussed.

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More information

Published date: 3 April 2017
Venue - Dates: European Conference on Integrated Optics (ECIO), Eindhoven, Netherlands, 2017-04-03 - 2017-04-05

Identifiers

Local EPrints ID: 430843
URI: https://eprints.soton.ac.uk/id/eprint/430843
PURE UUID: faef502d-ea90-40d3-8e7e-a2993411115f

Catalogue record

Date deposited: 16 May 2019 16:30
Last modified: 14 Oct 2019 16:33

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