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This article is cited in 3 scientific papers (total in 3 papers)
Lasers and amplifiers
Broadband mid-IR difference-frequency generation in 5 mol % MgO-doped periodically and aperiodically poled lithium niobate
Jiandong Zhanga, Jian Jiangab, Kai Wanga, Xuan Xiaoa, Siyao Yua, Zuxing Zhangab a School of Opto-electronic Engineering, Nanjing University of Posts and Telecommunications, China
b Advanced Photonics Technology Laboratory, Nanjing University of Posts and Telecommunications, China
Abstract:
We have theoretically investigated broadband mid-infrared (mid-IR) difference-frequency generation (DFG) in 5 mol % MgOdoped periodically poled lithium niobate (5 mol % MgO : PPLN) based on quasi-phase-matching (QPM) with group-velocity matching (GVM) between the pump and the idler for the eee interaction of QPM. The acceptance bandwidths are 282.3 nm and 35.4 nm around 3.4 μm with the signal and pump wavelengths fixed at 1.550 μm and 1.064 μm, and the required QPM periods are 30.26 μm and 30.25 μm, respectively. A method which can broaden the flattop QPM DFG acceptance bandwidth (ABW) around the GVM wavelength for the idler wavelength in 5 mol % MgO-doped aperiodically poled lithium niobate (5 mol % MgO : APPLN) is proposed. The structure of 5 mol % MgO : APPLN is optimised using a genetic algorithm by adjusting its parameters. The simulation results show that under the GVM conditions, the maximum ABW for the idler is 1045.9 nm and 96.6 nm at a fixed signal wavelength of 1.550 μm and at a fixed pump wavelength of 1.064 μm, respectively. The tradeoff between the reduced effective nonlinear coefficient and DFG ABW is discussed.
Keywords:
broadband difference-frequency generation, group-velocity matching, aperiodically poled crystal.
Received: 13.07.2017 Revised: 12.12.2017
Citation:
Jiandong Zhang, Jian Jiang, Kai Wang, Xuan Xiao, Siyao Yu, Zuxing Zhang, “Broadband mid-IR difference-frequency generation in 5 mol % MgO-doped periodically and aperiodically poled lithium niobate”, Kvantovaya Elektronika, 48:3 (2018), 222–227 [Quantum Electron., 48:3 (2018), 222–227]
Linking options:
https://www.mathnet.ru/eng/qe16775 https://www.mathnet.ru/eng/qe/v48/i3/p222
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Abstract page: | 429 | Full-text PDF : | 38 | References: | 32 | First page: | 7 |
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