Acta Optica Sinica, Volume. 40, Issue 2, 0214001(2020)
Single-Pass High-Efficiency Rotational Raman Laser Source Based on Deuterium-Filled Hollow-Core Photonic Crystal Fiber
Fig. 1. Schematics of experimental setup and principle. (a) Experimental setup diagram. Inset is schematic of hollow-core photonic crystal fiber’s cross section; (b) schematic of energy level transition of first-order rotating Raman of deuterium gas; (c) measured transmission spectrum of hollow-core photonic crystal fiber; (d) spectrum of pump laser at maximum output power
Fig. 2. Output spectrum at 2 MPa in hollow-core photonic crystal fiber (left inset is near-field spot of 1540-nm pump laser; right inset is near-field spot of 1645-nm Raman laser)
Fig. 3. Characteristics of output power. (a) Raman power as a function of pump power at different gas pressures; (b) maximum Raman conversion efficiency (Raman power/total pump power) as a function of pump power at different gas pressures; (c) residual pump power as a function of pump power; (d) Raman power curve at 2-MPa gas pressure
Fig. 4. Pulse and its time-domain characteristics. (a) Pulse shapes of pump laser, Raman laser, and residual pump laser at maximum pump power; (b) measurement of repetition rate of Raman laser
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Yulong Cui, Wei Huang, Zhiyue Zhou, Zhixian Li, Zefeng Wang. Single-Pass High-Efficiency Rotational Raman Laser Source Based on Deuterium-Filled Hollow-Core Photonic Crystal Fiber[J]. Acta Optica Sinica, 2020, 40(2): 0214001
Category: Lasers and Laser Optics
Received: Jul. 29, 2019
Accepted: Sep. 19, 2019
Published Online: Jan. 2, 2020
The Author Email: Wang Zefeng (hotrosemaths@163.com)