45 results on '"Baffigi, F."'
Search Results
2. Characterization of hot electrons generated by laser–plasma interaction at shock ignition intensities
3. Investigation on the origin of hot electrons in laser plasma interaction at shock ignition intensities
4. A model for pumping optimization in edge-pumped disk amplifiers
5. DELIVERY TO TARGET OF A MULTI-GY, MULTI-MEV TNSA PROTON BEAM WITH ULTRAHIGH DOSE-RATE
6. RECENT STUDIES TOWARD AN EFFECTIVE USE OF LASER-DRIVEN VERY HIGH ENERGY ELECTRONS FOR RADIOTHERAPY: FEASIBILITY ASSESSMENT OF ADVANCED IRRADIATION SCHEMES AND PERSPECTIVES FOR FLASH
7. Bremsstrahlung cannon design for shock ignition relevant regime
8. Observation and modelling of stimulated Raman scattering driven by an optically smoothed laser beam in experimental conditions relevant for shock ignition
9. X-ray time-resolved diagnostics of hot electron generation in shock ignition relevant experiments
10. Hot electron retention in laser plasma created under terawatt subnanosecond irradiation of Cu targets
11. Laser-driven proton acceleration via excitation of surface plasmon polaritons into TiO2 nanotube array targets
12. Intense proton acceleration in ultrarelativistic interaction with nanochannels
13. Publisher's Note: “Laser-driven strong shocks with infrared lasers at intensity of 1016 W/cm2” [Phys. Plasmas 26, 112708 (2019)]
14. Laser-plasma proton acceleration from under-critical density targets in a gas-mixture.
15. Laser-driven strong shocks with infrared lasers at intensity of 1016 W/cm2
16. High-quality 5 GeV electron bunches with resonant multi-pulse ionization injection
17. Time evolution of stimulated Raman scattering and two-plasmon decay at laser intensities relevant for shock ignition in a hot plasma
18. Progress in understanding the role of hot electrons for the shock ignition approach to inertial confinement fusion
19. Wavelength dependence of laser plasma interaction related to shock ignition approach – CORRIGENDUM
20. Light Ion Accelerating Line (L3IA): Test experiment at ILIL-PW
21. Wavelength dependence of laser plasma interaction related to shock ignition approach
22. [OA083] Toward 4d micro-CT and radiotherapy of small animals using all-optical, ultrashort X-ray sources: feasibility study and preliminary experimental results
23. Measurements of parametric instabilities at laser intensities relevant to strong shock generation
24. Transition from Coherent to Stochastic electron heating in ultrashort relativistic laser interaction with structured targets
25. Experimental observation of parametric instabilities at laser intensities relevant for shock ignition
26. Comparison of self-injection thresholds in He and N2 and role of self-focusing in LWFA
27. LESM: a laser-driven sub-MeV electron source delivering ultra-high dose rate on thin biological samples
28. Study of shock waves generation, hot electron production and role of parametric instabilities in an intensity regime relevant for the shock ignition
29. Dosimetric characterization of a laser-driven acceleration system
30. Short-wavelength experiments on laser pulse interaction with extended pre-plasma at the PALS-installation
31. Studies of ablated plasma and shocks produced in a planar target by a sub-nanosecond laser pulse of intensity relevant to shock ignition
32. Laser–plasma acceleration of electrons for radiobiology and radiation sources
33. Test of candidate light distributors for the muon(g−2)laser calibration system
34. Monte Carlo application based on GEANT4 toolkit to simulate a laser–plasma electron beam line for radiobiological studies
35. X-ray conversion of ultra-short laser pulses on a solid sample: Role of electron waves excited in the pre-plasma
36. Investigation on laser–plasma coupling in intense, ultrashort irradiation of a nanostructured silicon target
37. Experiment on laser interaction with a planar target for conditions relevant to shock ignition
38. Heat Transfer Enhancement by Ultrasound Pressure Waves in Liquid Water: A Cooling Method for New Electronic Components
39. Generation of high pressure shocks relevant to the shock-ignition intensity regime
40. Pre-plasma effect on energy transfer from laser beam to shock wave generated in solid target
41. Recent results from experimental studies on laser–plasma coupling in a shock ignition relevant regime
42. Heat Transfer Enhancement Using Ultrasonic Waves in Presence of Liquid: A Basic Research for Cooling Electronic
43. Evidence of Resonant Surface-Wave Excitation in the Relativistic Regime through Measurements of Proton Acceleration from Grating Targets
44. Micro-sphere layered targets efficiency in laser driven proton acceleration
45. Laser plasma proton acceleration experiments using foam-covered and grating targets
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