Zobrazeno 1 - 10
of 641
pro vyhledávání: '"Gizzi, L."'
Autor:
Negoita, F., Roth, M., Thirolf, P. G., Tudisco, S., Hannachi, F., Moustaizis, S., Pomerantz, I., Mckenna, P., Fuchs, J., Sphor, K., Acbas, G., Anzalone, A., Audebert, P., Balascuta, S., Cappuzzello, F., Cernaianu, M. O., Chen, S., Dancus, I., Freeman, R., Geissel, H., Ghenuche, P., Gizzi, L., Gobet, F., Gosselin, G., Gugiu, M., Higginson, D., D¶Humiêres, E., Ivan, C., Jaroszynski, D., Kar, S., Lamia, L., Leca, V., Neagu, L., Lanzalone, G., Meot, V., Mirfayzi, S. R., Mitu, I. O., Morel, P., Murphy, C., Petcu, C., Petrascu, H., Petrone, C., Raczka, P., Risca, M., Rotaru, F., Santos, J. J., Schumacher, D., Stutman, D., Tarisien, M., Tataru, M., Tatulea, B., Turcu, I. C. E., Versteegen, M., Ursescu, D., Gales, S., Zamfir, N. V.
High power lasers have proven being capable to produce high energy gamma rays, charged particles and neutrons to induce all kinds of nuclear reactions. At ELI, the studies with high power lasers will enter for the first time into new domains of power
Externí odkaz:
http://arxiv.org/abs/2201.01068
Autor:
Cristoforetti, G., Huller, S., Koester, P., Antonelli, L., Atzeni, S., Baffigi, F., Batani, D., Baird, C., Booth, N., Galimberti, M., Glize, K., Heron, A., Khan, M., Loiseau, P., Mancelli, D., Notley, M., Oliveira, P., Renner, O., Smid, M., Schiavi, A., Tran, G., Woolsey, N. C., Gizzi, L. A.
We report results and modelling of an experiment performed at the TAW Vulcan laser facility, aimed at investigating laser-plasma interaction in conditions which are of interest for the Shock Ignition scheme to Inertial Confinement Fusion, i.e. laser
Externí odkaz:
http://arxiv.org/abs/2108.13485
Autor:
Gizzi, L. A., Boella, E., Labate, L., Baffigi, F., Bilbao, P. J., Brandi, F., Cristoforetti, G., Fazzi, A., Fulgentini, L., Giove, D., Koester, P., Palla, D., Tomassini, P.
Publikováno v:
Sci Rep. 2021; 11: 13728
The interaction of ultraintense laser pulses with solids is largely affected by the plasma gradient at the vacuum-solid interface, which modifies the absorption and ultimately, controls the energy distribution function of heated electrons. A micromet
Externí odkaz:
http://arxiv.org/abs/2106.00814
The use of a gas cell as a target for laser weakfield acceleration (LWFA) offers the possibility to obtain stable and manageable laser-plasma interaction process, a mandatory condition for practical applications of this emerging technique, especially
Externí odkaz:
http://arxiv.org/abs/1904.07669
Akademický článek
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Akademický článek
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Autor:
Gizzi, L. A., Baffigi, F., Brandi, F., Bussolino, G., Cristoforetti, G., Fazzi, A., Fulgentini, L., Giove, D., Koester, P., Labate, L., Maero, G., Palla, D., Romé, M., Tomassini, P.
The construction of a novel Laser driven Light Ions Acceleration Line(L3IA) is progressing rapidly towards the operation, following the recent upgrade of the ILIL-PW laser facility. The Line was designed following the pilot experimental activity carr
Externí odkaz:
http://arxiv.org/abs/1803.02325
Autor:
Tomassini, P., De Nicola, S., Labate, L., Londrillo, P., Fedele, R., Terzani, D., Nguyen, F., Vantaggiato, G., Gizzi, L. A.
Publikováno v:
NIMA_PROCEEDINGS-D-17-00157R1 (2018)
Recently a new injection scheme for Laser Wake Field Acceleration, employing a single 100-TW-class laser system, has been proposed. In the Resonant Multi-Pulse Ionization injection (ReMPI) a resonant train of pulses drives a large amplitude plasma wa
Externí odkaz:
http://arxiv.org/abs/1802.09838
The construction of a novel user facility employing laser-driven plasma acceleration with superior beam quality will require an industrial grade, high repetition rate petawatt laser driver which is beyond existing technology. However, with the ongoin
Externí odkaz:
http://arxiv.org/abs/1802.05546
A new method for the generation of a train of pulses from a single high-energy, ultra short pulse is presented, suited for Resonant Multi-Pulse Ionization injection. The method is based on different transverse portion of the pulse being delayed by a
Externí odkaz:
http://arxiv.org/abs/1802.00826