Three-mode multiplexer in photonic crystal fibre

Research output: Contribution to conferencePaper

8 Citations (Scopus)

Abstract

Simple all-fibre mode multiplexers were made by controllably collapsing air holes along a short length of photonic crystal fibre. The LP01 mode and both LP11 modes were excited from three separate input cores, with less than 0.1 dB of loss at the wavelength of 1550 nm.

Original languageEnglish
Pages90-92
DOIs
Publication statusPublished - 2013
Event39th European Conference and Exhibition on Optical Communication (EDOC 2013) - London, UK United Kingdom
Duration: 22 Sep 201326 Sep 2013

Conference

Conference39th European Conference and Exhibition on Optical Communication (EDOC 2013)
CountryUK United Kingdom
CityLondon
Period22/09/1326/09/13

Fingerprint

photonics
fibers
crystals
multiplexing
air
wavelengths

Cite this

Yerolatsitis, S., & Birks, T. A. (2013). Three-mode multiplexer in photonic crystal fibre. 90-92. Paper presented at 39th European Conference and Exhibition on Optical Communication (EDOC 2013), London, UK United Kingdom. https://doi.org/10.1049/cp.2013.1302

Three-mode multiplexer in photonic crystal fibre. / Yerolatsitis, S; Birks, T A.

2013. 90-92 Paper presented at 39th European Conference and Exhibition on Optical Communication (EDOC 2013), London, UK United Kingdom.

Research output: Contribution to conferencePaper

Yerolatsitis, S & Birks, TA 2013, 'Three-mode multiplexer in photonic crystal fibre' Paper presented at 39th European Conference and Exhibition on Optical Communication (EDOC 2013), London, UK United Kingdom, 22/09/13 - 26/09/13, pp. 90-92. https://doi.org/10.1049/cp.2013.1302
Yerolatsitis S, Birks TA. Three-mode multiplexer in photonic crystal fibre. 2013. Paper presented at 39th European Conference and Exhibition on Optical Communication (EDOC 2013), London, UK United Kingdom. https://doi.org/10.1049/cp.2013.1302
Yerolatsitis, S ; Birks, T A. / Three-mode multiplexer in photonic crystal fibre. Paper presented at 39th European Conference and Exhibition on Optical Communication (EDOC 2013), London, UK United Kingdom.
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