13 dB/cm gain per unit length at 1.53 µm in KGdxLuyEr1-x-y(WO4)2 channel waveguides, allowing for ~40 dB total gain

Sergio Andrés Vázquez-Córdova, S. Aravazhi, C. Grivas, Yean Sheng Yong, Sonia Maria García Blanco

Research output: Contribution to conferencePosterOther research output

Abstract

We demonstrate a record-high optical gain of 13 dB/cm per unit length at 1.53 µm in erbium-doped channel waveguides. Longer waveguides are predicted to produce ~40 dB total gain for 500 mW of pump power.
Original languageEnglish
DOIs
Publication statusPublished - 30 Oct 2016
EventAdvanced Solid-State Lasers Congress, ASSL 2016 - Boston, United States
Duration: 30 Oct 20163 Nov 2016

Conference

ConferenceAdvanced Solid-State Lasers Congress, ASSL 2016
Abbreviated titleASSL
CountryUnited States
CityBoston
Period30/10/163/11/16

Fingerprint

waveguides
erbium
pumps

Keywords

  • METIS-320236

Cite this

Vázquez-Córdova, S. A., Aravazhi, S., Grivas, C., Yong, Y. S., & García Blanco, S. M. (2016). 13 dB/cm gain per unit length at 1.53 µm in KGdxLuyEr1-x-y(WO4)2 channel waveguides, allowing for ~40 dB total gain. Poster session presented at Advanced Solid-State Lasers Congress, ASSL 2016, Boston, United States. https://doi.org/10.1364/ASSL.2016.ATu6A.3
Vázquez-Córdova, Sergio Andrés ; Aravazhi, S. ; Grivas, C. ; Yong, Yean Sheng ; García Blanco, Sonia Maria. / 13 dB/cm gain per unit length at 1.53 µm in KGdxLuyEr1-x-y(WO4)2 channel waveguides, allowing for ~40 dB total gain. Poster session presented at Advanced Solid-State Lasers Congress, ASSL 2016, Boston, United States.
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title = "13 dB/cm gain per unit length at 1.53 µm in KGdxLuyEr1-x-y(WO4)2 channel waveguides, allowing for ~40 dB total gain",
abstract = "We demonstrate a record-high optical gain of 13 dB/cm per unit length at 1.53 µm in erbium-doped channel waveguides. Longer waveguides are predicted to produce ~40 dB total gain for 500 mW of pump power.",
keywords = "METIS-320236",
author = "V{\'a}zquez-C{\'o}rdova, {Sergio Andr{\'e}s} and S. Aravazhi and C. Grivas and Yong, {Yean Sheng} and {Garc{\'i}a Blanco}, {Sonia Maria}",
year = "2016",
month = "10",
day = "30",
doi = "10.1364/ASSL.2016.ATu6A.3",
language = "English",
note = "Advanced Solid-State Lasers Congress, ASSL 2016, ASSL ; Conference date: 30-10-2016 Through 03-11-2016",

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Vázquez-Córdova, SA, Aravazhi, S, Grivas, C, Yong, YS & García Blanco, SM 2016, '13 dB/cm gain per unit length at 1.53 µm in KGdxLuyEr1-x-y(WO4)2 channel waveguides, allowing for ~40 dB total gain' Advanced Solid-State Lasers Congress, ASSL 2016, Boston, United States, 30/10/16 - 3/11/16, . https://doi.org/10.1364/ASSL.2016.ATu6A.3

13 dB/cm gain per unit length at 1.53 µm in KGdxLuyEr1-x-y(WO4)2 channel waveguides, allowing for ~40 dB total gain. / Vázquez-Córdova, Sergio Andrés; Aravazhi, S.; Grivas, C.; Yong, Yean Sheng; García Blanco, Sonia Maria.

2016. Poster session presented at Advanced Solid-State Lasers Congress, ASSL 2016, Boston, United States.

Research output: Contribution to conferencePosterOther research output

TY - CONF

T1 - 13 dB/cm gain per unit length at 1.53 µm in KGdxLuyEr1-x-y(WO4)2 channel waveguides, allowing for ~40 dB total gain

AU - Vázquez-Córdova, Sergio Andrés

AU - Aravazhi, S.

AU - Grivas, C.

AU - Yong, Yean Sheng

AU - García Blanco, Sonia Maria

PY - 2016/10/30

Y1 - 2016/10/30

N2 - We demonstrate a record-high optical gain of 13 dB/cm per unit length at 1.53 µm in erbium-doped channel waveguides. Longer waveguides are predicted to produce ~40 dB total gain for 500 mW of pump power.

AB - We demonstrate a record-high optical gain of 13 dB/cm per unit length at 1.53 µm in erbium-doped channel waveguides. Longer waveguides are predicted to produce ~40 dB total gain for 500 mW of pump power.

KW - METIS-320236

U2 - 10.1364/ASSL.2016.ATu6A.3

DO - 10.1364/ASSL.2016.ATu6A.3

M3 - Poster

ER -

Vázquez-Córdova SA, Aravazhi S, Grivas C, Yong YS, García Blanco SM. 13 dB/cm gain per unit length at 1.53 µm in KGdxLuyEr1-x-y(WO4)2 channel waveguides, allowing for ~40 dB total gain. 2016. Poster session presented at Advanced Solid-State Lasers Congress, ASSL 2016, Boston, United States. https://doi.org/10.1364/ASSL.2016.ATu6A.3