论文标题

超时激光脉冲以超高强度驱动的超重离子加速度

Super-Heavy Ions Acceleration Driven by Ultrashort Laser Pulses at Ultrahigh Intensity

论文作者

Wang, Pengjie, Gong, Zheng, Lee, Seong Geun, Shou, Yinren, Geng, Yixing, Jeon, Cheonha, Kim, I Jong, Lee, Hwang Woon, Yoon, Jin Woo, Sung, Jae Hee, Lee, Seong Ku, Kong, Defeng, Liu, Jianbo, Mei, Zhusong, Cao, Zhengxuan, Pan, Zhuo, Choi, Il Woo, Yan, Xueqing, Nam, Chang Hee, Ma, Wenjun

论文摘要

由超短量(数十秒秒)激光脉冲驱动的等离子体的超重离子(SHIS)的加速度是一个充满挑战的话题,等待突破。电离过程的检测和控制以及最佳加速方案的采用对于产生高能量的SHIS至关重要。在这里,我们报告了有关以10^22 w/cm2的强度,使用超短激光脉冲(22 fs)的前所未有的1.2 GEV的深度电离超重离子(AU)的实验结果。开发了一种新型的自我校准诊断方法,以获取在51+的电荷状态下丰富的Au离子的绝对能量光谱和电荷状态分布,并达到61+。由2D粒子中支撑的测量电荷状态分布是检查与SHI加速相关的电离动力学的附加工具,表明激光强度是脉冲持续时间加速的至关重要的参数。双层靶标的使用导致加速度的延长而不牺牲加速场的强度,这对高能超重离子的产生非常有利。

The acceleration of super-heavy ions (SHIs) from plasmas driven by ultrashort (tens of femtoseconds) laser pulses is a challenging topic waiting for breakthrough. The detecting and controlling of the ionization process, and the adoption of the optimal acceleration scheme are crucial for the generation of highly energetic SHIs. Here, we report the experimental results on the generation of deeply ionized super-heavy ions (Au) with unprecedented energy of 1.2 GeV utilizing ultrashort laser pulses (22 fs) at the intensity of 10^22 W/cm2. A novel self-calibrated diagnostic method was developed to acquire the absolute energy spectra and charge state distributions of Au ions abundant at the charge state of 51+ and reaching up to 61+. The measured charge state distributions supported by 2D particle-in-cell simulations serves as an additional tool to inspect the ionization dynamics associated with SHI acceleration, revealing that the laser intensity is the crucial parameter for the acceleration of Au ions over the pulse duration. The use of double-layer targets results in a prolongation of the acceleration time without sacrificing the strength of acceleration field, which is highly favorable for the generation of high-energy super heavy ions.

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