2007 Volume 24 Issue 10
Article Contents

HUANG Yong-Sheng, WANG Nai-Yan, DUAN Xiao-Jiao, LAN Xiao-Fei, TAN Zhi-Xin, TANG Xiu-Zhang, HE Ye-Xi. 2007: Neutron Generation and Kinetic Energy of Expanding Laser Plasmas, Chinese Physics Letters, 24(10): 2792-2795.
Citation: HUANG Yong-Sheng, WANG Nai-Yan, DUAN Xiao-Jiao, LAN Xiao-Fei, TAN Zhi-Xin, TANG Xiu-Zhang, HE Ye-Xi. 2007: Neutron Generation and Kinetic Energy of Expanding Laser Plasmas, Chinese Physics Letters, 24(10): 2792-2795.

Neutron Generation and Kinetic Energy of Expanding Laser Plasmas

  • Available Online: 30/10/2007
  • Fund Project: the National Basic Research Programme of China under Grant No 2006CB806004, and the National Natural Science Foundation of China under Grant No 10334110
  • We investigate the kinetic energy of expanding plasma of a solid target heated by a ultra-short and ultra-intense laser pulse and the efficiency of energy coupling between the ultra-intense laser pulse and the solid target, in order to increase the utilization ratio of laser energy and to raise the neutron generation farther. Some new ideas about improving the energy utilization by head-on collisions between the expanding plasmas are proposed. The significance is the raise of generation of shorter duration neutron, of the order of picoseconds, which allows for an increase of energy resolution in time-of-flight experiments and also for the investigation of the dynamics of nuclear processes with high temporal resolution.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Neutron Generation and Kinetic Energy of Expanding Laser Plasmas

Abstract: We investigate the kinetic energy of expanding plasma of a solid target heated by a ultra-short and ultra-intense laser pulse and the efficiency of energy coupling between the ultra-intense laser pulse and the solid target, in order to increase the utilization ratio of laser energy and to raise the neutron generation farther. Some new ideas about improving the energy utilization by head-on collisions between the expanding plasmas are proposed. The significance is the raise of generation of shorter duration neutron, of the order of picoseconds, which allows for an increase of energy resolution in time-of-flight experiments and also for the investigation of the dynamics of nuclear processes with high temporal resolution.

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