A series of experiments recently carried out at the Rutherford Appleton Laboratory investigated various aspects of the laser-plasma interaction in the relativistic intensity regime. The propagation of laser pulses through preformed plasmas was studied at intensities exceeding 1019 W/cm2. The transmission of laser energy through long scale underdense plasmas showed to be inefficient unless a plasma channel is preformed ahead of the main laser pulse. The study of the interaction with overdense plasmas yielded indication of propagation at densities above the critical density, possible due to relativistic effects. The production of fast particles during the interaction with solid density targets was also investigated. The measurements revealed the presence of a small-sized directional source of multi-MeV protons, which was not observed when a plasma was preformed at the back of the solid target. The properties of the source are promising in view of its use in radiographic imaging of dense matter, and preliminary tests were carried out.

Propagation issues and fast particle source characterization in laser-plasma interactions at intensities exceeding 1019 W/cm2

Gizzi;L A;
2001

Abstract

A series of experiments recently carried out at the Rutherford Appleton Laboratory investigated various aspects of the laser-plasma interaction in the relativistic intensity regime. The propagation of laser pulses through preformed plasmas was studied at intensities exceeding 1019 W/cm2. The transmission of laser energy through long scale underdense plasmas showed to be inefficient unless a plasma channel is preformed ahead of the main laser pulse. The study of the interaction with overdense plasmas yielded indication of propagation at densities above the critical density, possible due to relativistic effects. The production of fast particles during the interaction with solid density targets was also investigated. The measurements revealed the presence of a small-sized directional source of multi-MeV protons, which was not observed when a plasma was preformed at the back of the solid target. The properties of the source are promising in view of its use in radiographic imaging of dense matter, and preliminary tests were carried out.
2001
Inglese
26th European Conference on laser interaction with matter (ECLIM)
4424
414
417
http://www.scopus.com/inward/record.url?eid=2-s2.0-0034942359&partnerID=40&md5=f9869e45e4b4fd3a58f36af43dee368a
Density measurement (specific gravity)
Laser pulses
Plasma probes
Protons
Radiography
Wave transmission
Laser-plasma interaction
Relativistic plasmas
Underdense plasmas
Plasma interactions
cited By (since 1996)2; Conference of org.apache.xalan.xsltc.dom.DOMAdapter@3a86965f ; Conference Date: org.apache.xalan.xsltc.dom.DOMAdapter@59fa54fd Through org.apache.xalan.xsltc.dom.DOMAdapter@41e1dc31; Conference Code:58346
12
none
Borghesi, M; Campbell, ; H, D; Galimberti, M; Gizzi, LEONIDA ANTONIO; L, A; Mackinnon, ; A, J; Nazarov, W; Schiavi, A; Willi, ; O,
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/199941
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