Infrared-laser and upconversion luminescence in Ho3+-Yb3+ codoped tellurite glass microsphere
Infrared-laser and upconversion luminescence in Ho3+-Yb3+ codoped tellurite glass microsphere
In this letter, Ho3+-Yb3+ codoped tellurite glasses were fabricated using the melting-quenching method to produce optical microsphere cavities. A 980 nm excitation laser was coupled into the microsphere through a fiber taper, providing lasing at around 2.0 μm and upconversion luminescence in the visible (380-780 nm).
Lasers, Microcavities, Optical materials, Upconversion
Li, Angzhen
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Dong, Yongkang
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Wang, Shunbin
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Jia, Shijie
be203e37-2dc0-49e5-95e6-d188d8039eee
Brambilla, Gilberto
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Wang, Pengfei
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February 2020
Li, Angzhen
2a6ff87d-2b65-488b-a27e-3e6c04887105
Dong, Yongkang
0fad0715-2d81-4ce5-a761-a3033a7bf5b4
Wang, Shunbin
70976916-f2c8-4a61-b0ba-2cdd77286bea
Jia, Shijie
be203e37-2dc0-49e5-95e6-d188d8039eee
Brambilla, Gilberto
815d9712-62c7-47d1-8860-9451a363a6c8
Wang, Pengfei
a1ba240f-d4f0-4150-bcd8-cb418e841dcb
Li, Angzhen, Dong, Yongkang, Wang, Shunbin, Jia, Shijie, Brambilla, Gilberto and Wang, Pengfei
(2020)
Infrared-laser and upconversion luminescence in Ho3+-Yb3+ codoped tellurite glass microsphere.
Journal of Luminescence, 218, [116826].
(doi:10.1016/j.jlumin.2019.116826).
Abstract
In this letter, Ho3+-Yb3+ codoped tellurite glasses were fabricated using the melting-quenching method to produce optical microsphere cavities. A 980 nm excitation laser was coupled into the microsphere through a fiber taper, providing lasing at around 2.0 μm and upconversion luminescence in the visible (380-780 nm).
Text
Infrared-laser and upconversion luminescence (no underline)
- Accepted Manuscript
More information
Accepted/In Press date: 16 October 2019
e-pub ahead of print date: 17 October 2019
Published date: February 2020
Keywords:
Lasers, Microcavities, Optical materials, Upconversion
Identifiers
Local EPrints ID: 435661
URI: http://eprints.soton.ac.uk/id/eprint/435661
ISSN: 0022-2313
PURE UUID: e5159ace-2258-466e-a683-384e2b765e1b
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Date deposited: 18 Nov 2019 17:30
Last modified: 06 Jun 2024 04:12
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Contributors
Author:
Angzhen Li
Author:
Yongkang Dong
Author:
Shunbin Wang
Author:
Shijie Jia
Author:
Gilberto Brambilla
Author:
Pengfei Wang
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