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1. Prominent radiative contributions from multiply-excited states in laser-produced tin plasma for nanolithography

2. Experimental discrimination of ion stopping models near the Bragg peak in highly ionized matter

4. Stopping Power Measurement for 100 keV/u Fe Ions in Hydrogen Plasma

5. High-energy ions from Nd:YAG laser ablation of tin microdroplets

6. Investigation of X-Ray Self-Emission of Plasma of Targets Heated by High-Power Pulses of Soft X-Ray Radiation

8. Prominent radiative contributions from multiply-excited states in laser-produced tin plasma for nanolithography

9. Spall-Velocity Reduction in Double-Pulse Impact on Tin Microdroplets

10. ]Numerical method for simulating rarefaction shocks in the approximation of phase-flip hydrodynamics

12. A hybrid model of laser energy deposition for multi-dimensional simulations of plasmas and metals

13. Investigation of Al plasmas from thin foils irradiated by high-intensity extreme ultraviolet

14. Calculation of output power and X-ray spectrum of Z-pinches based on multiwire arrays

15. Radiative heating of thin Al foils by intense extreme ultraviolet radiation

16. Centered rarefaction wave with a liquid-gas phase transition in the approximation of 'phase-flip' hydrodynamics

17. Power-law scaling of plasma pressure on laser-ablated tin microdroplets

18. A novel double hohlraum target to create a moderately coupled plasma for ion stopping experiments

19. Experimental discrimination of ion stopping models near the Bragg peak in highly ionized matter

20. Simulations of the energy loss of ions at the stopping-power maximum in a laser-induced plasma

21. Dynamics of volumetrically heated matter passing through the liquid–vapor metastable states

22. An efficient cell-centered diffusion scheme for quadrilateral grids

23. Plasma lens for the heavy ion accelerator at ITEP

24. Predictions for the energy loss of light ions in laser-generated plasmas at low and medium velocities

25. Test ion acceleration in a dynamic planar electron sheath

26. Stopping power measurements for 100-keV/u Cu ions in hydrogen and nitrogen

27. Laser accelerated ions in ICF research prospects and experiments

28. Power plant design and accelerator technology for heavy ion inertial fusion energy

29. Energy conversion in a reactor chamber for fast ignition heavy ion fusion

30. M.I-12: short pulse laser generated ion beams for fast ignition

31. Power plant conceptual design for fast ignition heavy-ion fusion

32. Experimental and numerical studies of plasma production in the initial stage of implosion of a cylindrical wire array

33. New developments in the theory of ICF targets, and fast ignition with heavy ions

34. Prospects of heavy ion fusion in cylindrical geometry

35. Magnetized implosions driven by intense ion beams

36. Kinetic theory of alpha particles production in a dense and strongly magnetized plasma

37. Ignition conditions for magnetized target fusion in cylindrical geometry

38. Experiments with ASTERIX and ATLAS

39. Ignition energy scaling of inertial confinement fusion targets

40. Heavy-ion fusion activities at ITEP

41. Reflectivity and Optical Brightness of Laser-Induced Shocks in Silicon

42. Dense plasma diagnostics by fast proton beams

43. Self-similar implosions and explosions of radiatively cooling gaseous masses

44. Optical probing of laser-induced indirectly driven shock waves in aluminum

45. An improved version of the view factor method for simulating inertial confinement fusion hohlraums

46. Diagnostics of plasma target for ion beam: target interaction experiments

47. Fragmentation dynamics of liquid–metal droplets under ultra-short laser pulses

48. Creation of a homogeneous plasma column by means of hohlraum radiation for ion-stopping measurements

49. On the maximum conversion efficiency into the 13.5-nm extreme ultraviolet emission under a steady-state laser ablation of tin microspheres

50. A novel experimental setup for energy loss and charge state measurements in dense moderately coupled plasma using laser-heated hohlraum targets

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