Hexagonally-poled lithium niobate (HEXLN)
Hexagonally-poled lithium niobate (HEXLN)
We report the fabrication and nonlinear optical characterisation of 2-D hexagonally-poled lithium niobate (HEXLN). The various reciprocal lattice vectors of the 2-D format permit multiple noncolinear quasi-phase matching geometries. Second-harmonic conversion efficiencies > 60% are observed.
Ross, G.W.
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Broderick, N.G.R.
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Offerhaus, H.L.
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Smith, P.G.R.
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Richardson, D.J.
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Hanna, D.C.
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2000
Ross, G.W.
e881119e-2126-442e-a24d-506dac48a4a4
Broderick, N.G.R.
4cfa2c7c-097a-48d6-b221-4e92ad1c6aea
Offerhaus, H.L.
75130d34-dbad-4f37-bbd4-08fa7c0f9d4b
Smith, P.G.R.
8979668a-8b7a-4838-9a74-1a7cfc6665f6
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Hanna, D.C.
3da5a5b4-71c2-4441-bb67-21f0d28a187d
Ross, G.W., Broderick, N.G.R., Offerhaus, H.L., Smith, P.G.R., Richardson, D.J. and Hanna, D.C.
(2000)
Hexagonally-poled lithium niobate (HEXLN).
CLEO 2000, Nice, France, San Francisco, United States.
07 - 12 May 2000.
(doi:10.1109/CLEO.2000.907006).
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Conference or Workshop Item
(Other)
Abstract
We report the fabrication and nonlinear optical characterisation of 2-D hexagonally-poled lithium niobate (HEXLN). The various reciprocal lattice vectors of the 2-D format permit multiple noncolinear quasi-phase matching geometries. Second-harmonic conversion efficiencies > 60% are observed.
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Published date: 2000
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CWH3
Venue - Dates:
CLEO 2000, Nice, France, San Francisco, United States, 2000-05-07 - 2000-05-12
Identifiers
Local EPrints ID: 16976
URI: http://eprints.soton.ac.uk/id/eprint/16976
PURE UUID: b52199e4-ad19-4943-9165-092f20899b0b
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Date deposited: 23 Aug 2005
Last modified: 16 Mar 2024 02:49
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Contributors
Author:
G.W. Ross
Author:
N.G.R. Broderick
Author:
H.L. Offerhaus
Author:
P.G.R. Smith
Author:
D.C. Hanna
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