This paper presents the goals and some of the results of experiments conducted within the Working Package 10 (Fusion Experimental Programme) of the HiPER Project. These experiments concern the study of the physics connected to "Advanced Ignition Schemes", i.e. the Fast Ignition and the Shock Ignition Approaches to Inertial Fusion. Such schemes are aimed at achieving a higher gain, as compared to the classical approach which is used in NIF, as required for future reactors, and making fusion possible with smaller facilities. In particular, a series of experiments related to Fast Ignition were performed at the RAL (UK) and LULI (France) Laboratories and were addressed to study the propagation of fast electrons (created by a short-pulse ultra-high-intensity beam) in compressed matter, created either by cylindrical implosions or by compression of planar targets by (planar) laser-driven shock waves. A more recent experiment was performed at PALS and investigated the laser-plasma coupling in the 10(16) W/cm(2) intensity regime of interest for Shock Ignition.

Experimental Results Performed in the Framework of the HIPER European Project

2011

Abstract

This paper presents the goals and some of the results of experiments conducted within the Working Package 10 (Fusion Experimental Programme) of the HiPER Project. These experiments concern the study of the physics connected to "Advanced Ignition Schemes", i.e. the Fast Ignition and the Shock Ignition Approaches to Inertial Fusion. Such schemes are aimed at achieving a higher gain, as compared to the classical approach which is used in NIF, as required for future reactors, and making fusion possible with smaller facilities. In particular, a series of experiments related to Fast Ignition were performed at the RAL (UK) and LULI (France) Laboratories and were addressed to study the propagation of fast electrons (created by a short-pulse ultra-high-intensity beam) in compressed matter, created either by cylindrical implosions or by compression of planar targets by (planar) laser-driven shock waves. A more recent experiment was performed at PALS and investigated the laser-plasma coupling in the 10(16) W/cm(2) intensity regime of interest for Shock Ignition.
2011
Istituto Nazionale di Ottica - INO
Inglese
Hein, J; Silva, LO; Korn, G; Gizzi, LA; Edwards, C. (Editors)
DIODE-PUMPED HIGH ENERGY AND HIGH POWER LASERS ELI: ULTRARELATIVISTIC LASER-MATTER INTERACTIONS AND PETAWATT PHOTONICS AND HIPER: THE EUROPEAN PATHWAY TO LASER ENERGY
Conference on Diode-Pumped High Energy and High Power Lasers/ELI: Ultrarelativistic Laser-Matter Interactions and Petawatt Photonics/HiPER: the European Pathway to Laser Energy
8080
808027
978-0-81948-670-7
http://proceedings.spiedigitallibrary.org/proceeding.aspx?articleid=1271895
Sì, ma tipo non specificato
APR 18-20, 2011
Prague, CZECH REPUBLIC
Shock Ignition
Inertial Fusion
Short-pulse ultra-high-intensity laser
Cylindrical implosions
Shock compressed matter
35
none
D Batani D, Batani; M Koenig M, Koenig; S Baton S, Baton; F Perez F, Perez; L A, Gizzi LA Gizzi; P Koester P, Koester; L Labate L, Labate; J Honrubia ...espandi
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/20.500.14243/200361
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