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Matter and Radiation at Extremes Volume 5 Issue 6 2020

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Matter and Radiation at Extremes

July, 2020   Volume 5 Issue 6

 

FUNDAMENTAL PHYSICS AT EXTREMES

  1. Dielectronic recombination in non-LTE plasmas, F. B. Rosmej, V. A. Astapenko, V. S. Lisitsa and L. A. Vainshtein,

Matter and Radiation at Extremes 5, 064201 (2020); https://doi.org/10.1063/5.0014158

  1. Statistical and quantum photoionization cross sections in plasmas: Analytical approaches for any configurations including inner shells, F. B. Rosmej, L. A. Vainshtein, V. A. Astapenko and V. S. Lisitsa,

Matter and Radiation at Extremes 5, 064202 (2020); https://doi.org/10.1063/5.0022751

  1. Region-of-interest micro-focus computed tomography based on an all-optical inverse Compton scattering source, Yue Ma, Jianfei Hua, Dexiang Liu, Yunxiao He, Tianliang Zhang, Jiucheng Chen, Fan Yang, Xiaonan Ning, Zhongshan Yang, Jie Zhang, Chih-Hao Pai, Yuqiu Gu and Wei Lu,
    Matter and Radiation at Extremes 5, 064401 (2020); https://doi.org/10.1063/5.0016034
  2. Proton beams from intense laser-solid interaction: Effects of the target materials, Y. X. Geng, D. Wu, W. Yu, Z. M. Sheng, S. Fritzsche, Q. Liao, M. J. Wu, X. H. Xu, D. Y. Li, W. J. Ma, H. Y. Lu, Y. Y. Zhao, X. T. He, J. E. Chen, C. Lin and X. Q. Yan,
    Matter and Radiation at Extremes 5, 064402 (2020); https://doi.org/10.1063/5.0014854   
  3. Two-temperature warm dense hydrogen as a test of quantum protons driven by orbital-free density functional theory electronic forces, Dongdong Kang, Kai Luo, Keith Runge and S. B. Trickey, Matter and Radiation at Extremes 5, 064403 (2020); https://doi.org/10.1063/5.0025164  

LASER AND PARTICLE BEAM FUSION

  1. Development of low-coherence high-power laser drivers for inertial confinement fusion, Yanqi Gao, Yong Cui, Lailin Ji, Daxing Rao, Xiaohui Zhao, Fujian Li, Dong Liu, Wei Feng, Lan Xia, Jiani Liu, Haitao Shi, Pengyuan Du, Jia Liu, Xiaoli Li, Tao Wang, Tianxiong Zhang, Chong Shan, Yilin Hua, Weixin Ma, Xun Sun, Xianfeng Chen, Xiuguang Huang, Jian Zhu, Wenbing Pei, Zhan Sui and Sizu Fu,
    Matter and Radiation at Extremes 5, 065201 (2020); https://doi.org/10.1063/5.0009319  

HIGH PRESSURE PHYSICS AND MATERIALS SCIENCE

  1. Theory-orientated discovery of high-temperature superconductors in superhydrides stabilized under high pressure, Jian Lv, Ying Sun, Hanyu Liu and Yanming Ma, Matter and Radiation at Extremes 5, 068101 (2020); https://doi.org/10.1063/5.0033232
  2. Exploring high-temperature superconductivity in hard matter close to structural instability, Xiao-Jia Chen, Matter and Radiation at Extremes 5, 068102 (2020); https://doi.org/10.1063/5.0033143 
  3. Diamond gets harder, tougher, and more deformable, Bo Xu and Yongjun Tian, Matter and Radiation at Extremes 5, 068103 (2020); https://doi.org/10.1063/5.0029519 
  4. Exploring nanomechanics with high-pressure techniques, Bin Chen, Matter and Radiation at Extremes 5, 068104 (2020); https://doi.org/10.1063/5.0032600

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