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Novel Pumping Schemes of Mid-IR Photonic Crystal Fiber Lasers for Aerospace Applications (Invited Paper)

机译:用于航空航天应用的中红外光子晶体纤维激光器的新型泵浦方案(邀请纸)

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The paper illustrates the design of two pumping schemes for Mid-IR lasers based on photonic crystal fibers (PCFs) made of dysprosium doped chalcogenide glass Dy~(3+):Ga_5Ge_(20)Sb_(10)S_65. The simulation is performed by taking into account the spectroscopic parameters measured on the rare earth-doped glass sample in order to perform a realistic feasibility investigation. The first pump scheme provides an optical beam emission close to 4400 nm wavelength by employing two pump beams at the wavelengths close to 2800 nm and 4100 nm, respectively. The second pump scheme allows beam emission close to 4400 nm wavelength via a 1700 nm pump, its efficiency is increased by including a suitable optical amplifier after the laser cavity. The proposed light sources based on chalcogenide glass photonic crystal fibers (PCFs) doped with Dy~(3+) ions are investigated via a home-made numerical model based on the coupled mode theory and solving the rare earth rate equations. A number of promising applications in different areas such as satellite remote sensing and aerospace, biology, molecular spectroscopy and environmental monitoring are feasible.
机译:本文说明了基于光子晶体纤维(PCFS)的两种泵送方案的设计,其由掺杂镝硫化物玻璃DY〜(3 +):GA_5GE_(20)SB_(10)S_65制成的光子晶体纤维(PCF)。通过考虑在稀土掺杂玻璃样品上测量的光谱参数来进行模拟,以便进行现实的可行性调查。通过在接近2800nm和4100nm的波长处采用两个泵浦光束,第一泵方案提供接近4400nm波长的光束发射。第二泵方案允许通过1700nm泵接近4400nm波长的波束发射,通过在激光腔之后包括合适的光放大器,增加其效率。基于耦合模式理论的自制数值模型研究了基于硫属化物玻璃光子晶体纤维(PCF)的所提出的光源,并求解稀土率方程。在不同领域的许多有前途的应用,如卫星遥感和航空航天,生物学,分子光谱和环境监测是可行的。

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