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Boron quantum dots all-optical modulator based on efficient photothermal effect

Cong Wang et al · Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China · 2021

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All-optical devices without external electronic components have drawn extraordinary attentions in all-optical communication. In this work, boron quantum dots (BQDs) were synthesized by a facile liquid-phase exfoliation method. The as-prepared BQDs showed good structural homogeneity and crystallinity, broadband optical absorption as well as excellent photothermal properties. Femtosecond-resolved transient absorption further revealed the short carrier relaxation time of BQDs. Inspired by the outstanding photothermal properties and ultrafast carrier dynamic of BQDs, we fabricated BQDs-based all-optical modulator. The phase shift with a slope efficiency of 0.032 π/mW and response time of 0.97 ms can be achieved. The modulator was used in laser resonance cavity to achieve all-optical actively Q-switched laser operation with control repetition rate. This prototypical BQDs-based all-optical modulator shows a great potential to be applied in all-optical information processing and communication.

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APA 7

al, C. W. E. (2021). Boron quantum dots all-optical modulator based on efficient photothermal effect. https://doi.org/10.29026/oea.2021.200032

MLA

al, Cong Wang et. "Boron quantum dots all-optical modulator based on efficient photothermal effect." 2021. https://doi.org/10.29026/oea.2021.200032.

Chicago

al, Cong Wang et. 2021. "Boron quantum dots all-optical modulator based on efficient photothermal effect.". https://doi.org/10.29026/oea.2021.200032.

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al, C. W. E. 2021, Boron quantum dots all-optical modulator based on efficient photothermal effect, Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China, available at: https://doi.org/10.29026/oea.2021.200032 [Accessed 7 Aug. 2026].

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Titolo
Boron quantum dots all-optical modulator based on efficient photothermal effect
Autore / collaboratori
Cong Wang et al
Editore
Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China
Anno di pubblicazione
2021
ISSN
2096-4579
ISSN
2096-4579
Lingua
Inglés

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