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Radiation-resistant Bismuth-doped Germanosilicate Fiber Amplifier in the E+S Band

Radiation-resistant Bismuth-doped Germanosilicate Fiber Amplifier in the E+S Band
Radiation-resistant Bismuth-doped Germanosilicate Fiber Amplifier in the E+S Band
We report a radiation-resistant Bi-doped germanosilicate fiber amplifier with a 35dB gain at 1440nm after 2.5kGy
Optica Publishing Group
Zhai, Ziwei
95caa116-8203-4b74-aa67-b5d00cf14e6d
Halder, Arindam
9a8529b1-dce4-4d6c-964c-2fa2e8cf4d67
Negut, Daniel
ae33c85a-c600-4fed-ae00-840646443cb7
Sahu, Jayanta
009f5fb3-6555-411a-9a0c-9a1b5a29ceb2
Zhai, Ziwei
95caa116-8203-4b74-aa67-b5d00cf14e6d
Halder, Arindam
9a8529b1-dce4-4d6c-964c-2fa2e8cf4d67
Negut, Daniel
ae33c85a-c600-4fed-ae00-840646443cb7
Sahu, Jayanta
009f5fb3-6555-411a-9a0c-9a1b5a29ceb2

Zhai, Ziwei, Halder, Arindam, Negut, Daniel and Sahu, Jayanta (2024) Radiation-resistant Bismuth-doped Germanosilicate Fiber Amplifier in the E+S Band. In Proceedings of CLEO: Science and Innovations 2024. Optica Publishing Group.. (doi:10.1364/CLEO_SI.2024.STu3D.6).

Record type: Conference or Workshop Item (Paper)

Abstract

We report a radiation-resistant Bi-doped germanosilicate fiber amplifier with a 35dB gain at 1440nm after 2.5kGy

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More information

e-pub ahead of print date: 5 May 2024
Published date: 5 May 2024

Identifiers

Local EPrints ID: 497589
URI: http://eprints.soton.ac.uk/id/eprint/497589
PURE UUID: 43fa4fc4-4505-466d-9817-4cd1c98d6ad3
ORCID for Ziwei Zhai: ORCID iD orcid.org/0000-0001-7128-7326
ORCID for Arindam Halder: ORCID iD orcid.org/0000-0002-5517-4812
ORCID for Jayanta Sahu: ORCID iD orcid.org/0000-0003-3560-6152

Catalogue record

Date deposited: 28 Jan 2025 17:39
Last modified: 29 Jan 2025 03:03

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Contributors

Author: Ziwei Zhai ORCID iD
Author: Arindam Halder ORCID iD
Author: Daniel Negut
Author: Jayanta Sahu ORCID iD

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