节点文献
飞秒激光中高能质子的产生与加速的研究
Study of high energy protons generate and accelerate in femtosecond laser interaction
【摘要】 为了探索飞秒激光与固体靶相互作用中高能质子的产生和加速机制,在超短超强激光装置"SILEX-I"上进行了飞秒激光与平面固体薄膜Cu靶的相互作用中高能质子空间分布、能谱和产额的实验研究.实验采用固体核径迹探测器CR39和Thomson离子谱仪相结合的方式,在固体靶背表面法线方向测量了质子空间分布、能谱和产额.实验结果表明:质子沿着靶背法线方向发射,质子空间分布呈圆环状,存在一定的立体角;质子在一定能量处出现截断;截断能量的大小与靶厚度有关.经分析,高能离子的产生和加速是多种作用机制共同作用的结果,其中静电场中的TNSA加速机制则占主导地位.
【Abstract】 To study the generation and the acceleration mechanisms of high energy protons in the interaction of femtosecond laser with solid targets,the high energy protons behavior at the normal direction of the rear surface of the target produced from ultraintense pulse laser irradiated Cu thin film solid targets is explored on SILEX-I laser facility.The solid nuclear detector CR39 and Thomson spectrum are used to detect the spatial distribution,energy spectrum and yields of protons.The result show that the protons are emitted from the normal direction of target-back,protons have the circular annular space distribution and there is a solid angle in them,the protons have a certain cut-off energy which depends upon the thickness of the target.It is found that the high-energy proton generation and acceleration are due to the sum of a variety of mechanisms of joint action.Among them,the electrostatic field TNSA acceleration mechanism is dominant.
【Key words】 Femtosecond laser; Spatial distribution of protons; Energy spectrum; Yields; Acceleration mechanisms;
- 【文献出处】 原子与分子物理学报 ,Journal of Atomic and Molecular Physics , 编辑部邮箱 ,2014年05期
- 【分类号】O437
- 【被引频次】4
- 【下载频次】78