Chinese Optics Letters, Volume. 20, Issue 5, 051601(2022)
VOx/NaVO3 nanocomposite as a novel saturable absorber for passive Q-switching operation
Fig. 1. VOx/NaVO3 composite material characterization: (a) SEM; (b) O elemental mapping; (c) V elemental mapping; (d) Na elemental mapping; (e) HRTEM; (f) SAED pattern; (g) XRD pattern; and (h) Raman spectrum.
Fig. 2. Nonlinear transmission of VOx/V2O3 nanocomposite versus (a) Z axis at 1.3 µm, (b) intensity at 1.3 µm, (c) Z axis at 2 µm, and (d) intensity at 2 µm.
Fig. 3. Schematic setup for the Q-switching operations at 1.3 and 2 µm with VOx/NaVO3 saturable absorber (gain: NdVO4 for 1.3 µm and Tm:YLF for 2 µm, SA: VOx/NaVO3).
Fig. 4. Passive Q-switching operation at 1.3 µm with VOx/NaVO3 saturable absorber. (a) CW and Q-switched output power, (b) pulse duration and repetition rate, (c) pulse train, and (d) temporal pulse profile.
Fig. 5. Passively Q-switched Tm:YLF laser at ∼ 2 µm with VOx/NaVO3 saturable absorber. (a) CW and Q-switched output power, (b) pulse duration and repetition rate, (c) pulse train, and (d) temporal pulse profile.
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Linghao Kong, Hongwei Chu, Na Li, Han Pan, Shengzhi Zhao, Dechun Li, "VOx/NaVO3 nanocomposite as a novel saturable absorber for passive Q-switching operation," Chin. Opt. Lett. 20, 051601 (2022)
Category: Optical Materials
Received: Jan. 7, 2022
Accepted: Feb. 18, 2022
Published Online: Mar. 16, 2022
The Author Email: Hongwei Chu (hongwei.chu@sdu.edu.cn), Dechun Li (dechun@sdu.edu.cn)