Er:YGG planar waveguide amplifiers for LIDAR applications
Er:YGG planar waveguide amplifiers for LIDAR applications
Er:YGG is a promising candidate for greenhouse-gas LIDAR due to fortuitous transitions around key absorption lines of carbon-dioxide and methane. We present growth of crystal films by pulsed-laser-deposition, their spectroscopy and initial characterization as amplifiers.
Beecher, Stephen
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Grant-Jacob, James
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Hua, Ping
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Shepherd, David
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Eason, Robert
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Mackenzie, Jacob
1d82c826-fdbf-425b-ac04-be43ccf12008
2016
Beecher, Stephen
b3664adc-d6b5-4a5a-a09a-8e1415c6d3f5
Grant-Jacob, James
c5d144d8-3c43-4195-8e80-edd96bfda91b
Hua, Ping
92fa76e2-970b-45f5-a459-d9f95e735303
Shepherd, David
9fdd51c4-39d6-41b3-9021-4c033c2f4ead
Eason, Robert
e38684c3-d18c-41b9-a4aa-def67283b020
Mackenzie, Jacob
1d82c826-fdbf-425b-ac04-be43ccf12008
Beecher, Stephen, Grant-Jacob, James, Hua, Ping, Shepherd, David, Eason, Robert and Mackenzie, Jacob
(2016)
Er:YGG planar waveguide amplifiers for LIDAR applications.
Advanced Solid State Lasers (Laser Applications Conference 2016), Boston, United States.
(doi:10.1364/ASSL.2016.JTh2A.9).
Record type:
Conference or Workshop Item
(Paper)
Abstract
Er:YGG is a promising candidate for greenhouse-gas LIDAR due to fortuitous transitions around key absorption lines of carbon-dioxide and methane. We present growth of crystal films by pulsed-laser-deposition, their spectroscopy and initial characterization as amplifiers.
Text
ASSL-2016-JTh2A-9_ErYGGPlanarWaveguideAmplifier.pdf
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Published date: 2016
Venue - Dates:
Advanced Solid State Lasers (Laser Applications Conference 2016), Boston, United States, 2016-01-01
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 405355
URI: http://eprints.soton.ac.uk/id/eprint/405355
PURE UUID: 846d4d89-6850-4d3a-ba00-5ae170f4ec66
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Date deposited: 03 Feb 2017 09:53
Last modified: 16 Mar 2024 04:05
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