Contents
2022
Volume: 7 Issue 1
8 Article(s)

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Editorial
Recent progress in matter in extreme states created by laser
K. Batani, D. Batani, X. T. He, and K. Shigemori
Matter and Radiation at Extremes
  • Publication Date: Jan. 01, 1900
  • Vol. 7, Issue 1, 013001 (2022)
Fundamental Physics at Extreme Light
Photon polarization effects in polarized electron–positron pair production in a strong laser field
Ya-Nan Dai, Bai-Fei Shen, Jian-Xing Li, Rashid Shaisultanov, Karen Z. Hatsagortsyan, Christoph H. Keitel, and Yue-Yue Chen
Matter and Radiation at Extremes
  • Publication Date: Jan. 01, 1900
  • Vol. 7, Issue 1, 014401 (2022)
Generation of single-cycle relativistic infrared pulses at wavelengths above 20 µm from density-tailored plasmas
Xing-Long Zhu, Wei-Yuan Liu, Su-Ming Weng, Min Chen, Zheng-Ming Sheng, and Jie Zhang
Matter and Radiation at Extremes
  • Publication Date: Jan. 01, 1900
  • Vol. 7, Issue 1, 014403 (2022)
High Pressure Physics and Materials Science
Static and dynamic diamond anvil cell (s-dDAC): A bidirectional remote controlled device for static and dynamic compression/decompression
Lei Su, Kaiyuan Shi, Li Zhang, Yanlong Wang, and Guoqiang Yang
A novel bidirectional remotely controlled device for static and dynamic compression/decompression using diamond anvil cells (DACs) has been developed that can control pressure in an accurate and consistent manner. Electromechanical piezoelectric actuators are applied to a conventional DAC, allowing applications under a
Matter and Radiation at Extremes
  • Publication Date: Jan. 01, 1900
  • Vol. 7, Issue 1, 018401 (2022)
Inertial Confinement Fusion Physics
Stark–Zeeman line-shape model for multi-electron radiators in hot dense plasmas subjected to large magnetic fields
Sandrine Ferri, Olivier Peyrusse, and Annette Calisti
We present a Stark–Zeeman spectral line-shape model and the associated numerical code, PPPB, designed to provide fast and accurate line shapes for arbitrary atomic systems for a large range of plasma conditions. PPPB is based on the coupling of the PPP code—a Stark-broadened spectral line-shape code developed for multi
Matter and Radiation at Extremes
  • Publication Date: Jan. 01, 1900
  • Vol. 7, Issue 1, 015901 (2022)
Simultaneous high-resolution x-ray backlighting and self-emission imaging for laser-produced plasma diagnostics using a two-energy multilayer Kirkpatrick–Baez microscope
S. Z. Yi, J. Q. Dong, L. Jiang, Q. S. Huang, E. F. Guo, and Wang Z. S.
Matter and Radiation at Extremes
  • Publication Date: Jan. 01, 1900
  • Vol. 7, Issue 1, 015902 (2022)
Radiation and Hydrodynamics
A portable X-pinch design for x-ray diagnostics of warm dense matter
J. Strucka, J. W. D. Halliday, T. Gheorghiu, H. Horton, B. Krawczyk, P. Moloney, S. Parker, G. Rowland, N. Schwartz, S. Stanislaus, S. Theocharous, C. Wilson, Z. Zhao, T. A. Shelkovenko, S. A. Pikuz, and S. N. Bland
We describe the design and x-ray emission properties (temporal, spatial, and spectral) of Dry Pinch I, a portable X-pinch driver developed at Imperial College London. Dry Pinch I is a direct capacitor discharge device, 300 × 300 × 700 mm3 in size and ∼50 kg in mass, that can be used as an external driver for
Matter and Radiation at Extremes
  • Publication Date: Jan. 01, 1900
  • Vol. 7, Issue 1, 016901 (2022)