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1. Laser-driven ion and electron acceleration from near-critical density gas targets: towards high-repetition rate operation in the 1 PW, sub-100 fs laser interaction regime

2. A cylindrical implosion platform for the study of highly magnetized plasmas at LMJ

3. Experimental capabilities of the LMJ-PETAL facility

5. Ion acceleration by an ultrashort laser pulse interacting with a near-critical-density gas jet

6. A quasi-monoenergetic short time duration compact proton source for probing high energy density states of matter

7. A quasi-monoenergetic short time duration compact proton source for probing high energy density states of matter

8. Enhanced relativistic-electron beam collimation using two consecutive laser pulses

9. Generation of high energy laser-driven electron and proton sources with the 200 TW system VEGA 2 at the Centro de Laseres Pulsados

10. Laser-driven ion and electron acceleration from near-critical density gas targets: Towards high-repetition rate operation in the 1 PW, sub-100 fs laser interaction regime

11. Proton stopping measurements at low velocity in warm dense carbon

12. First indirect drive inertial confinement fusion campaign at Laser Megajoule

13. Laser-driven quasi-static B-fields for magnetized high-energy-density experiments.

14. Laser-Driven Quasi-Static Magnetic Fields for Magnetized High Energy-Density Experiments

15. Enhancing laser beam performance by interfering intense laser beamlets

16. Cylindrical implosion platform for the study of highly magnetized plasmas at Laser MegaJoule

17. Low Velocity Proton Stopping Power Measurements in Warm Dense Carbon

18. Experimental study of fast electron propagation in compressed matter

19. Enhanced ion acceleration using the high-energy petawatt PETAL laser

20. Generation of high energy laser-driven electron and proton sources with the 200 TW system VEGA 2 at the Centro de Laseres Pulsados

21. Collimated Propagation of Fast Electron Beams Accelerated by High-Contrast Laser Pulses in Highly Resistive Shocked Carbon

22. Commissioning experiments of VEGA-2 at Centro de Láseres Pulsados (CLPU)

23. Spectral tomographic analysis of Bremsstrahlung X-rays generated in a laser-produced plasma

24. Direct measurement of kilo-tesla level magnetic field generated with laser-driven capacitor-coil target by proton deflectometry

25. Approach to the study of fast electron transport in cylindrically imploded targets

26. Publisher’s Note: “Monte-Carlo simulation of noise in hard X-ray Transmission Crystal Spectrometers: Identification of contributors to the background noise and shielding optimization” [Rev. Sci. Instrum. 85, 11D615 (2014)]

27. Enhanced Relativistic-Electron-Beam Energy Loss in Warm Dense Aluminum

28. High-power laser-induced fast electron transport in solid targets and in laser-induced shock compressed plasmas

29. Experiments on fast electron generation in laser-induced shock compressed plasmas performed in the framework of the hiper project

30. Monte-Carlo simulation of noise in hard X-ray Transmission Crystal Spectrometers: Identification of contributors to the background noise and shielding optimization

31. Development of x-ray radiography for high energy density physics

32. Unraveling resistive versus collisional contributions to relativistic electron beam stopping power in cold-solid and in warm-dense plasmas

34. Supra-thermal electron beam stopping power and guiding in dense plasmas

35. Relativistic High-Current Electron-Beam Stopping-Power Characterization in Solids and Plasmas: Collisional Versus Resistive Effects

36. Experimental characterization of fast electron stopping power in dense media ranging from solid to warm and dense matter

37. Unraveling resistive versus collisional contributions to relativistic electron beam stopping power in cold-solid and in warm-dense plasmas

38. Relativistic high-current electron-beam stopping-power characterization in solids and plasmas: collisional versus resistive effects

39. Experimental study of fast electron propagation in compressed matter

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