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Storage ring free-electron lasing at 176 nm--dielectric mirror development for vacuum ultraviolet free-electron lasers

机译:176 nm的存储环自由电子激射-真空紫外自由电子激光器的介电镜开发

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Mirrors for storage ring free-electron lasers in the vacuum ultraviolet must provide adequate reflectivity and resistance against synchrotron radiation. The free-electron laser system at ELETTRA (Trieste, Italy) is targeted to lase in the spectral range between 155 and 200 nm. It was demonstrated that dense oxide multilayer coatings allow lasing down to 189.9 nm. However, pure oxide systems show significant absorption at lower wavelengths and cannot be employed below 189.9 nm. Fluoride stacks can be deposited down to 130 nm with high reflection values above 95percent, but their resistance against the harsh synchrotron environment is poor. They rapidly degrade; lasing cannot be realized with this mirror approach. For the range between 170 and 190 nm, hybrid systems--combining fluoride and oxide materials--have been manufactured. With appropriate deposition procedures, mirrors achieve reflectance values up to 99percent and an adequate radiation resistance simultaneously. A mirror based on a conventional fluoride stack protected by a dense silicon dioxide protection layer was deposited and successfully employed for free-electron lasing at 176.4 nm.
机译:真空紫外线中的存储环自由电子激光器的反射镜必须提供足够的反射率和抗同步加速器辐射的能力。 ELETTRA(意大利特里斯特市)的自由电子激光系统的目标是在155至200 nm的光谱范围内发射激光。事实证明,致密的氧化物多层涂层可以发射低至189.9 nm的激光。但是,纯氧化物体系在较低波长下显示出显着的吸收,因此不能在189.9 nm以下使用。氟化物叠层可以沉积到130 nm,并具有高于95%的高反射值,但是它们对恶劣的同步加速器环境的抵抗力却很差。它们迅速退化;这种镜像方法无法实现激光发射。对于170到190 nm的范围,已经制造出混合系统-氟化物和氧化物材料的结合。通过适当的沉积程序,反射镜可同时实现高达99%的反射率值和足够的抗辐射性。沉积基于由致密的二氧化硅保护层保护的常规氟化物堆叠的反射镜,并将其成功用于176.4 nm的自由电子激光发射。

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