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1. Proton beams generated via thermonuclear deuterium–deuterium fusion by means of modified cavity pressure acceleration-type targets as a candidate for proton–boron fusion driver.

2. Highly efficient acceleration and collimation of high-density plasma using laser-induced cavity pressure

3. Magnetized plasma implosion in a snail target driven by a moderate-intensity laser pulse

4. Influence of the magnetic field on properties of hot electron emission from ablative plasma produced at laser irradiation of a disc-coil target

6. 2D MHD simulation of spontaneous magnetic fields generated during interaction of 1315.2-nm laser radiation with copper slabs at 1016 W/cm2

15. Hot electron retention in laser plasma created under terawatt subnanosecond irradiation of Cu targets

16. Neutron production in cavity pressure acceleration of plasma objects

19. 2D MHD simulation of spontaneous magnetic fields generated during interaction of 1315.2-nm laser radiation with copper slabs at 1016 W/cm2.

20. Elaboration of 3-frame complex interferometry for optimization studies of capacitor-coil optical magnetic field generators

21. Wavelength dependence of laser plasma interaction related to shock ignition approach – CORRIGENDUM

22. Short-wavelength experiments on laser pulse interaction with extended pre-plasma at the PALS-installation

23. Space-time resolved measurements of spontaneous magnetic fields in laser-produced plasma

24. Pre-plasma effect on laser beam energy transfer to a dense target under conditions relevant to shock ignition

25. Pre-plasma effect on energy transfer from laser beam to shock wave generated in solid target

26. Highly efficient acceleration of dense plasma in the LICPA accelerator

29. Interaction of a laser-produced copper plasma jet with ambient plastic plasma

30. Erratum: “Influence of plastic plasma on process of copper plasma jet formation” [Phys. Plasmas 17, 114505 (2010)]

31. Influence of low atomic number plasma component on the formation of laser-produced plasma jets

32. Interaction of two plasma jets produced successively from Cu target

35. Reversed scheme of thin foil acceleration

39. Study of the conditions for the effective energy transfer in a process of acceleration and collision of the thin metal disks with the massive target

43. Generation of shock waves and formation of craters in a solid material irradiated by a short laser pulse

44. APPLICATION OF THE LASER SIMULATION METHOD OF CRATER CREATION IN THE LASER-AL SOLID TARGET EXPERIMENT ON THE PALS FACILITY

45. How to Produce a Plasma Jet Using a Single and Low Energy Laser Beam.

46. Optical Investigations of Powerful Laser Actions on Massive and Flyer Targets.

47. Plasma and Shock Generation by Indirect Laser Pulse Action.

48. Flyer Target Acceleration and Energy Transfer at its Collision with Massive Targets.

49. How Produce a Plasma Jet Using a Single and Low Energy Laser Beam.

50. Stable dense plasma jets produced at laser power densities around 1014 W/cm2.

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