Observation of saturable absorption of Sn metal film with intense EUV laser pulse

H. Yoneda, Y. Inubushi, F. Sato, S. Morimoto, T. Kumagaya, M. Nagasono, A. Higashiya, M. Yabashi, T. Ishikawa, H. Ohashi, H. Kimura, T. Togashi, R. Kodama
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引用次数: 2

Abstract

In this work we report observation of ultra-fast switching of vacuum ultra-violet (VUV) light caused by saturable absorption by a solid metal foil. A sub-picosecond VUV pulse from a free-electron laser located in SPring-8 is focused on a metal target and transmission is measured as a function of input energy, thickness of the absorbing layer, and VUV laser wavelength. As is well known, metals have a strong linear free electron response associated with the plasma oscillation and collisional absorption (high-frequency resistivity). Due to the plasma screening and strong absorption, it is difficult to use bulk metals for optical components. However, above the plasma frequency as in our experiments, a metal can transmit light and shows phenomena related to the band gap structure, similar to the optical properties observed in transparent materials for visible and infrared light. We observe a strong gating of Sn transmission at energy fluences above 6J/cm2 at wavelength of 51nm. The ratio of the transmission at high intensity to low intensity is typically greater than 100:1. The estimated saturated transmittance is about 0.25. The mechanism of the switching phenomena is partially explained by the shift of Sn N shell band edge, however, more details should be investigated with more exact physical models and precise measurements. We think this is the first observation of such a strong nonlinear phenomena for VUV light and this result will promote the development of new nonlinear photonic devices such as auto-correlator and pulse slicer for the VUV region.
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强EUV激光脉冲对锡金属膜饱和吸收的观察
本文报道了固体金属箔可饱和吸收引起真空紫外线(VUV)光的超快速切换。将位于SPring-8的自由电子激光器发出的亚皮秒VUV脉冲聚焦在金属靶上,并测量了输入能量、吸收层厚度和VUV激光波长的函数。众所周知,金属具有与等离子体振荡和碰撞吸收(高频电阻率)相关的强线性自由电子响应。由于等离子体屏蔽和强吸收,块状金属难以用于光学元件。然而,在我们的实验中,在等离子体频率以上,金属可以透射光,并显示出与带隙结构相关的现象,类似于在可见光和红外光的透明材料中观察到的光学特性。我们观察到在51nm波长下,在6J/cm2以上的能量影响下,Sn的透射有很强的门控效应。高强度与低强度的透射比通常大于100:1。估计饱和透过率约为0.25。Sn - N壳带边缘的移动可以部分解释开关现象的机理,但更多的细节需要更精确的物理模型和精确的测量来研究。我们认为这是第一次观察到如此强烈的非线性现象,这一结果将促进新型非线性光子器件的发展,如自相关器和脉冲切片器。
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