Hydrodynamic simulations of laser interactions with low-density foams

Article Properties
Cite
Kapin, T., et al. “Hydrodynamic Simulations of Laser Interactions With Low-Density Foams”. Czechoslovak Journal of Physics, vol. 56, no. S2, 2006, pp. B493-B499, https://doi.org/10.1007/s10582-006-0243-y.
Kapin, T., Kuchařík, M., Limpouch, J., & Liska, R. (2006). Hydrodynamic simulations of laser interactions with low-density foams. Czechoslovak Journal of Physics, 56(S2), B493-B499. https://doi.org/10.1007/s10582-006-0243-y
Kapin T, Kuchařík M, Limpouch J, Liska R. Hydrodynamic simulations of laser interactions with low-density foams. Czechoslovak Journal of Physics. 2006;56(S2):B493-B499.
Refrences
Title Journal Journal Categories Citations Publication Date
10.1017/S0263034605050457 2005
Laser interactions with plastic foam—metallic foil layered targets Plasma Physics and Controlled Fusion
  • Science: Chemistry: Physical and theoretical chemistry
  • Science: Physics: Electricity and magnetism: Electricity: Plasma physics. Ionized gases
  • Science: Physics
36 2004
10.13182/FST03-A267 Fusion Science and Technology
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Nuclear engineering. Atomic power
  • Technology: Electrical engineering. Electronics. Nuclear engineering
  • Technology: Engineering (General). Civil engineering (General)
2003
10.1070/QE2003v033n02ABEH002370 Quantum Electronics
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Electric apparatus and materials. Electric circuits. Electric networks
  • Science: Physics
  • Science: Physics
  • Technology: Chemical technology
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Materials of engineering and construction. Mechanics of materials
  • Science: Physics
2003
10.1088/0029-5515/40/3Y/315 2000
Citations
Title Journal Journal Categories Citations Publication Date
Additive manufactured foam targets for experiments on high-power laser–matter interaction

Journal of Applied Physics
  • Science: Chemistry: Physical and theoretical chemistry
  • Science: Physics
  • Technology: Chemical technology
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Materials of engineering and construction. Mechanics of materials
  • Science: Physics
4 2023
Kinetic modeling of laser absorption in foams

Physics of Plasmas
  • Science: Physics: Electricity and magnetism: Electricity: Plasma physics. Ionized gases
  • Science: Physics
2 2023
Hybrid ablation–expansion model for laser interaction with low-density foams

Physics of Plasmas
  • Science: Physics: Electricity and magnetism: Electricity: Plasma physics. Ionized gases
  • Science: Physics
3 2023
Studies of laser-plasma interaction physics with low-density targets for direct-drive inertial confinement fusion on the Shenguang III prototype

Matter and Radiation at Extremes
  • Science: Physics: Nuclear and particle physics. Atomic energy. Radioactivity
  • Science: Physics
  • Science: Physics
33 2021
Formation and evolution of post-solitons following a high intensity laser-plasma interaction with a low-density foam target

Plasma Physics and Controlled Fusion
  • Science: Chemistry: Physical and theoretical chemistry
  • Science: Physics: Electricity and magnetism: Electricity: Plasma physics. Ionized gases
  • Science: Physics
2 2021
Citations Analysis
The category Science: Physics 8 is the most commonly referenced area in studies that cite this article. The first research to cite this article was titled Arbitrary Lagrangian Eulerian method for laser plasma simulations and was published in 2007. The most recent citation comes from a 2023 study titled Hybrid ablation–expansion model for laser interaction with low-density foams. This article reached its peak citation in 2023, with 3 citations. It has been cited in 7 different journals. Among related journals, the Physics of Plasmas cited this research the most, with 3 citations. The chart below illustrates the annual citation trends for this article.
Citations used this article by year