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Visible-range hybrid femtosecond systems based on a XeF(C-A) amplifier: State of the art and prospects

机译:基于XeF(C-A)放大器的可见光混合飞秒系统:最新技术和前景

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Results of experimental and theoretical investigations of the hybrid (solid state/gas) visible-range femtosecond systems THL-100 (IHCE SB RAS) and THL-30 (P.N. Lebedev Physics Institute) based on a Ti: sapphire front end and a photochemical XeF(C-A) amplifier are reported. The front end generates 50-fs optical pulses with the second-harmonic (475 nm) energy of up to 5 mJ. The active medium of the amplifier is produced in a mixture XeF2 - N2 subjected to VUV radiation of xenon excited by an electron beam. The computer model is developed for calculating parameters of the XeF(C - A) amplifier, which is in a good agreement with experiments. In the THL-100 system with the 25-cm output aperture of the XeF(C-A) amplifier, a record visible-range femtosecond radiation peak power of 14 GW was obtained in a 50-fs pulse with the time contrast of above 108. The measured power of an amplified spontaneous emission of the XeF(C-A) amplifier in the angle of 0.2 mrad was 32 W. The result obtained testifies that the hybrid approach to the development of ultrahigh-power systems provides a high time contrast of radiation (greater than 1012 for the projected peak power of 100 TW). In the THL-30 system, prospects for shortening an amplified femtosecond pulse are studied and it is experimentally shown that by compensating a third-order dispersion in a hybrid system one can obtain pulses with duration of at least 27 fs with a recompression of amplified pulses in bulk glass. Also, a new phenomenon was observed of spectrum broadening and self-compression of negatively chirped femtosecond pulses in the visible range under a nonlinear interaction of wide-aperture beams with fused silica. This result opens prospects for development of the new methods of selfcompression for femtosecond pulses that are lacking physical limitations on pulse energy and realisation of self-compression of amplified pulses in the output window of the XeF(C-A) amplifier.
机译:基于Ti:蓝宝石前端和光化学XeF的混合(固态/气体)可见光飞秒系统THL-100(IHCE SB RAS)和THL-30(PN列别捷夫物理研究所)的实验和理论研究的结果(CA)放大器已报告。前端产生50 fs的光脉冲,其第二谐波(475 nm)能量高达5 mJ。放大器的有源介质是在XeF2-N2混合物中产生的,该混合物受到电子束激发的氙的VUV辐射。开发了用于计算XeF(CA)放大器参数的计算机模型,该模型与实验非常吻合。在XeF(CA)放大器的输出孔为25厘米的THL-100系统中,以50 fs的脉冲获得了创纪录的14 GW的可见范围飞秒辐射峰值功率,时间对比度高于108。 XeF(CA)放大器在0.2 mrad角处的放大自发发射的实测功率为32W。获得的结果证明,开发超高功率系统的混合方法具有较高的辐射时间对比(大于100 TW的预计峰值功率为1012)。在THL-30系统中,研究了缩短飞秒脉冲放大的前景,并通过实验表明,通过补偿混合系统中的三阶色散,可以通过重新压缩放大脉冲来获得持续时间至少为27 fs的脉冲在散装玻璃中。此外,在宽孔径光束与熔融石英的非线性相互作用下,在可见光范围内观察到了负chi飞秒脉冲的光谱展宽和自压缩的新现象。这一结果为飞秒脉冲自压缩新方法的开发开辟了前景,该方法对脉冲能量缺乏物理限制,并且在XeF(C-A)放大器的输出窗口中实现了放大脉冲的自压缩。

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