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Environmentally stable black phosphorus saturable absorber for ultrafast laser

Jin Xinxin et al · Wiley · 2020

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Black phosphorus (BP) attracts huge interest in photonic and optoelectronic applications ranging from passive switch for ultrafast lasers to photodetectors. However, the instability of chemically unfunctionalized BP in ambient environment due to oxygen and moisture remains a critical barrier to its potential applications. Here, the parylene-C layer was used to protect inkjet-printed BP-saturable absorbers (BP-SA), and the efficacy of this passivation layer was demonstrated on the stable and continuous operation of inkjet-printed BP-SA in harsh environmental conditions. BP-SA was integrated in an erbium-doped ring laser cavity and immersed in water at ~60°C during operation for investigation. Mode-locked pulses at ~1567.3 nm with ~538 fs pulse width remained stable for >200 h. The standard deviation of spectral width, central wavelength, and pulse width were 0.0248 nm, 0.0387 nm, and 2.3 fs, respectively, in this period, underscoring the extreme stability of BP-SA against high temperature and humidity. This approach could enable the exploitation of BP-based devices for photonic applications when operating under adverse environmental conditions.

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APA 7

al, J. X. E. (2020). Environmentally stable black phosphorus saturable absorber for ultrafast laser. https://doi.org/10.1515/nanoph-2019-0524

MLA

al, Jin Xinxin et. "Environmentally stable black phosphorus saturable absorber for ultrafast laser." 2020. https://doi.org/10.1515/nanoph-2019-0524.

Chicago

al, Jin Xinxin et. 2020. "Environmentally stable black phosphorus saturable absorber for ultrafast laser.". https://doi.org/10.1515/nanoph-2019-0524.

Harvard

al, J. X. E. 2020, Environmentally stable black phosphorus saturable absorber for ultrafast laser, Wiley, available at: https://doi.org/10.1515/nanoph-2019-0524 [Accessed 10 Aug. 2026].

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Titolo
Environmentally stable black phosphorus saturable absorber for ultrafast laser
Autore / collaboratori
Jin Xinxin et al
Editore
Wiley
Anno di pubblicazione
2020
ISSN
2192-8606
ISSN
2192-8606
Lingua
Inglés

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