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Mode-locked operation in thulium-holmium doped fiber laser based on Cr2AlC MAX phase SA coated arc-shaped fiber

机译:基于Cr2AlC MAX相SA涂层弧形光纤的掺铥钬光纤激光器锁模操作

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摘要

This study presents the application of MAX phase material as a mode-locker in the thulium-holmium-doped fiber laser (THDFL) cavity in generating ultrashort pulses. MAX phase materials were rapidly developed for applications in the pulsed laser field due to their promising properties and characteristics, such as strong nonlinear absorption, high damage tolerance, and good thermal and electrical conductivities. Chromium Aluminum Carbide (Cr2AlC) MAX phase sample was explicitly introduced into the cavity by drop-casting the Cr2AlC onto the fabricated arc-shaped fiber. As a result, an ultrafast mode-locking laser system was achieved utilizing a Cr2AlC saturable absorber (SA) at a pump power of 115.8 mW, having a central wavelength of 1908.58 nm. The spectral bandwidth obtained was 3 nm, and a measured pulse repetition rate and pulse width of 12.14 MHz and 1.3 ps, respectively. The results indicate that Cr2AlC SA is a promising material to be used as a passive SA to initiate the mode-locking generation of fiber laser in the 1.9 mu m band.
机译:本研究介绍了MAX相位材料作为模锁器在掺铥钬光纤激光器(THDFL)腔中产生超短脉冲的应用。MAX相材料因其具有很强的非线性吸收、高损伤容限、良好的导热性和导电性等有前途的特性和特性,因此被迅速开发用于脉冲激光领域的应用。通过将Cr2AlC滴铸到制造的弧形纤维上,将碳化铬铝(Cr2AlC)MAX相样品明确引入空腔。因此,利用Cr2AlC可饱和吸收体(SA)实现了超快锁模激光系统,泵浦功率为115.8 mW,中心波长为1908.58 nm。获得的光谱带宽为3 nm,测得的脉冲重复频率和脉冲宽度分别为12.14 MHz和1.3 ps。结果表明,Cr2AlC SA是一种很有前途的材料,可作为无源SA在1.9 μ m波段启动光纤激光器的锁模生成。

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