Nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber
This work demonstrates the fabrication of a saturable absorber with nickel 1,3,5-benzene-tricarboxylic acid (Ni-H3BTC)-metal organic framework (MOF) to generate soliton pulses in an erbium-doped fiber laser. The saturable absorber was fabricated by spin-coating Ni-H3BTC-MOF/polydimethylsiloxane comp...
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2022
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my.upm.eprints.1023162023-07-10T00:34:24Z http://psasir.upm.edu.my/id/eprint/102316/ Nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber Murad, Amir Mohd Yusoff, Norita Ying, Josephine Chyi Liew Yaacob, Mohd Hanif Goh, Chee Seong Mahdi, Mohd Adzir This work demonstrates the fabrication of a saturable absorber with nickel 1,3,5-benzene-tricarboxylic acid (Ni-H3BTC)-metal organic framework (MOF) to generate soliton pulses in an erbium-doped fiber laser. The saturable absorber was fabricated by spin-coating Ni-H3BTC-MOF/polydimethylsiloxane composite on a tapered fiber as the encapsulation agent for light-matter interactions. The proposed cavity emitted a pulse laser at 1557.72 nm central wavelength with 3-dB bandwidth of 5.90 nm, pulse width of 907 fs, and average output power of 13.02 mW. At maximum pump power of 247.8 mW, the pulse energy was calculated to be 1.3 nJ at 10 MHz repetition rate. These results might assist as a footing to explore different types of available MOFs and their properties for the generation of ultrashort pulses. Elsevier 2022 Article PeerReviewed Murad, Amir and Mohd Yusoff, Norita and Ying, Josephine Chyi Liew and Yaacob, Mohd Hanif and Goh, Chee Seong and Mahdi, Mohd Adzir (2022) Nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber. Results in Physics, 41. art. no. 105881. pp. 1-7. ISSN 2211-3797 https://www.sciencedirect.com/science/article/pii/S2211379722005204 10.1016/j.rinp.2022.105881 |
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This work demonstrates the fabrication of a saturable absorber with nickel 1,3,5-benzene-tricarboxylic acid (Ni-H3BTC)-metal organic framework (MOF) to generate soliton pulses in an erbium-doped fiber laser. The saturable absorber was fabricated by spin-coating Ni-H3BTC-MOF/polydimethylsiloxane composite on a tapered fiber as the encapsulation agent for light-matter interactions. The proposed cavity emitted a pulse laser at 1557.72 nm central wavelength with 3-dB bandwidth of 5.90 nm, pulse width of 907 fs, and average output power of 13.02 mW. At maximum pump power of 247.8 mW, the pulse energy was calculated to be 1.3 nJ at 10 MHz repetition rate. These results might assist as a footing to explore different types of available MOFs and their properties for the generation of ultrashort pulses. |
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Article |
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Murad, Amir Mohd Yusoff, Norita Ying, Josephine Chyi Liew Yaacob, Mohd Hanif Goh, Chee Seong Mahdi, Mohd Adzir |
spellingShingle |
Murad, Amir Mohd Yusoff, Norita Ying, Josephine Chyi Liew Yaacob, Mohd Hanif Goh, Chee Seong Mahdi, Mohd Adzir Nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber |
author_facet |
Murad, Amir Mohd Yusoff, Norita Ying, Josephine Chyi Liew Yaacob, Mohd Hanif Goh, Chee Seong Mahdi, Mohd Adzir |
author_sort |
Murad, Amir |
title |
Nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber |
title_short |
Nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber |
title_full |
Nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber |
title_fullStr |
Nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber |
title_full_unstemmed |
Nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber |
title_sort |
nickel 1,3,5-benzene-tricarboxylic acid-metal organic framework polymer composite saturable absorber |
publisher |
Elsevier |
publishDate |
2022 |
url |
http://psasir.upm.edu.my/id/eprint/102316/ https://www.sciencedirect.com/science/article/pii/S2211379722005204 |
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13.211869 |