S. Zamek
Curved waveguide Bragg gratings on a chip
Zamek, S.; Tan, D.T.H.; Khajavikhan, M.; Nezhad, M.P.; Fainman, Y.
Authors
D.T.H. Tan
M. Khajavikhan
Dr Maziar Nezhad M.P.Nezhad@salford.ac.uk
Professor Nanophotonics Microsystems Eng
Y. Fainman
Contributors
S. Zamek
Other
D.T.H. Tan
Other
M. Khajavikhan
Other
Dr Maziar Nezhad M.P.Nezhad@salford.ac.uk
Other
Y. Fainman
Other
Abstract
We demonstrate curved waveguide Bragg gratings on an SOI chip. Our approach allows long Bragg gratings to be fabricated on an extremely small area, avoiding write-field stitching errors, typically introduced in the fabrication process.
Presentation Conference Type | Conference Paper (unpublished) |
---|---|
Conference Name | Frontiers in Optics 2010 |
Start Date | Oct 24, 2010 |
End Date | Oct 28, 2010 |
Publication Date | 2010 |
Deposit Date | Aug 21, 2024 |
Journal | Optics InfoBase Conference Papers |
Publisher | Optical Society of America |
Pages | paper FMH4 |
Book Title | Frontiers in Optics 2010/Laser Science XXVI, OSA Technical Digest |
DOI | https://doi.org/10.1364/FIO.2010.FMH4 |
You might also like
On the merits of a unified physics and engineering undergraduate programme of study
(2022)
Journal Article
Suspended nanocrystalline diamond ridge waveguides designed for the mid-infrared
(2021)
Journal Article
Isotropic silicon etch characteristics in a purely inductively coupled SF6 plasma
(2019)
Journal Article
CO2 laser micromachining of nanocrystalline diamond films grown on doped silicon substrates
(2016)
Journal Article
On the measurement of the Pockels effect in strained silicon
(2015)
Journal Article