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Excitation Of High Energy Levels Under Laser Exposure Of Suspensions Of Nanoparticles In Liquids

机译:激光对液体中悬浮的纳米粒子的激发作用下的高能级激发

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Laser exposure of suspensions of nanoparticles in liquids leads to excitation of high energy levels in both liquid and nanoparticle material. The emission spectrum of the colloidal solution under exposure of a suspension metallic nanoparticles in water to radiation of a Nd: YAG laser of a picosecond range of pulse duration is discussed. Excitation of nuclear energy levels and neutron release is experimentally studied on the model system of transmutation of Hg into Au that occurs under exposure of Hg nanodrops suspended in D_2O. The proposed mechanism involves: (ⅰ) emission of X-ray photons by Hg nanoparticles upon laser exposure, leading to neutron release from D_2O, (ⅱ) initiation of Hg→ Au transmutation by the capture of neutrons. The effect of transmutation is more pronounced using ~(196)Hg isotope instead of Hg of natural isotope composition. The influence of laser pulse duration on the degree of transmutation (from fs through ns range) is discussed.
机译:纳米颗粒在液体中的悬浮液的激光暴露会导致液体和纳米颗粒材料中的高能级激发。讨论了在悬浮金属纳米粒子在水中暴露于脉冲持续时间皮秒范围的Nd:YAG激光的辐射下胶体溶液的发射光谱。在悬浮于D_2O的Hg纳米滴暴露下,Hg转变为Au的模型系统对核能水平和中子释放的激发进行了实验研究。提出的机理涉及:(ⅰ)汞纳米粒子在激光照射下发射X射线光子,导致中子从D_2O释放;(ⅱ)通过捕获中子引发Hg→Au trans变。使用〜(196)Hg同位素代替天然同位素组成的Hg时,trans变的影响更为明显。讨论了激光脉冲持续时间对of变程度(从fs到ns范围)的影响。

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