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Experimental observation of gain in a resonantly pumped Pr3+-doped chalcogenide glass mid-infrared fibre amplifier notwithstanding the signal excited-state absorption

机译:尽管有信号激发态吸收但在共振泵浦的掺Pr3 +的硫族化物玻璃中红外光纤放大器中增益的实验观察

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摘要

We demonstrate a maximum gain of 4.6 dB at a signal wavelength of 5.28 μm in a 4.1 μm resonantly pumped Pr3+-doped selenide-based chalcogenide glass fibre amplifier of length 109 mm, as well as a new signal excited-stated absorption (ESA) at signal wavelengths around 5.5 μm. This work to the best of our knowledge is the first experimental demonstration of gain at mid-infrared (MIR) wavelengths in a Pr3+-doped chalcogenide fibre amplifier. The signal ESA of the fibre is attributed to the transition 3H6 → (3F4, 3F3) after the pump ESA (3H5 → 3H6) at a pump wavelength of 4.1 μm, which absorbs the MIR signal at wavelengths of 5.37, 5.51 and 5.57 μm, and so spoils the amplifier’s performance at these wavelengths. Thus, this signal ESA should be suppressed in a resonantly pumped Pr3+-doped selenide-based chalcogenide fibre amplifier.
机译:我们证明了在共振波长为109μmm的掺Pr Pr 3 + 的硒基硫族化物玻璃纤维放大器中的4.1μμm的信号波长为5.28μm时,最大增益为4.6μdB,以及一种新的信号激发态吸收(ESA)在信号波长约5.5μm处。据我们所知,这项工作是在掺有Pr 3 + 的硫族化物光纤放大器中进行中红外(MIR)波长增益的第一个实验演示。光纤的信号ESA归因于泵ESA()之后的过渡 3 H6→( 3 F4, 3 F3) 3 H5→ 3 H6)的泵浦波长为4.1μm,它会吸收波长为5.37、5.51和5.57μm的MIR信号,从而损害放大器在这些波长下的性能。因此,应在共振泵浦的Pr 3 + 掺杂的硒基硫族化物光纤放大器中抑制此信号ESA。

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