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A new energy spectrum reconstruction method for Time-Of-Flight diagnostics of high-energy laser-driven protons

Authors :
Milluzzo, G.
Scuderi, V.
Alejo, A.
Amico, A. G.
Booth, N.
Borghesi, M.
Cirrone, G. A. P.
Cuttone, G.
Doria, D.
Green, J.
Kar, S.
Korn, G.
Larosa, G.
Leanza, R.
Margarone, D.
Martin, P.
McKenna, P.
Petringa, G.
Pipek, J.
Romagnani, L.
Romano, F.
Russo, A.
Schillaci, F.
Publication Year :
2018

Abstract

The Time-of-Flight (ToF) technique coupled with semiconductor-like detectors, as silicon carbide and diamond, is one of the most promising diagnostic methods for high-energy, high repetition rate, laser-accelerated ions allowing a full on-line beam spectral characterization. A new analysis method for reconstructing the energy spectrum of high-energy laser-driven ion beams from TOF signals is hereby presented and discussed. The proposed method takes into account the detector's working principle, through the accurate calculation of the energy loss in the detector active layer, using Monte Carlo simulations. The analysis method was validated against well-established diagnostics, such as the Thomson Parabola Spectrometer, during an experimental campaign carried out at the Rutherford Appleton Laboratory (RAL, UK) with the high-energy laser-driven protons accelerated by the VULCAN Petawatt laser.

Subjects

Subjects :
Physics - Accelerator Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1812.01357
Document Type :
Working Paper
Full Text :
https://doi.org/10.1063/1.5082746