Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Eliezer, Shalom
2012.
Relativistic acceleration of micro-foils with prospects for fast ignition.
Laser and Particle Beams,
Vol. 30,
Issue. 2,
p.
225.
Ghoranneviss, M.
Salar Elahi, A.
Hora, H.
Miley, G.H.
Malekynia, B.
and
Abdollahi, Z.
2012.
Laser fusion energy from p-7Li with minimized radioactivity.
Laser and Particle Beams,
Vol. 30,
Issue. 3,
p.
459.
Hora, Heinrich
2012.
Fundamental difference between picosecond and nanosecond laser interaction with plasmas: Ultrahigh plasma block acceleration links with electron collective ion acceleration of ultra-thin foils.
Laser and Particle Beams,
Vol. 30,
Issue. 2,
p.
325.
Hora, H.
Sadighi-Bonabi, R.
Yazdani, E.
Afarideh, H.
Nafari, F.
and
Ghorannevis, M.
2012.
Effect of quantum correction on the acceleration and delayed heating of plasma blocks.
Physical Review E,
Vol. 85,
Issue. 3,
Lalousis, P.
Földes, I.B.
and
Hora, H.
2012.
Ultrahigh acceleration of plasma by picosecond terawatt laser pulses for fast ignition of fusion.
Laser and Particle Beams,
Vol. 30,
Issue. 2,
p.
233.
Pourtalari, A. Mohammadian
Jafarizadeh, M. A.
and
Ghoranneviss, M.
2012.
Propagation of ion shock in solid DT target with nonlinear force-driven plasma blocks.
Radiation Effects and Defects in Solids,
Vol. 167,
Issue. 11,
p.
850.
Malekynia, B.
and
Razavipour, S. S.
2013.
The internal propagation of fusion flame with the strong shock of a laser driven plasma block for advanced nuclear fuel ignition.
Chinese Physics B,
Vol. 22,
Issue. 5,
p.
055202.
Hora, Heinrich
Miley, George H.
He, Xiantu
Zheng, Wudi
Lalousis, Paraskevas
Földes, Istvan
Szatmari, Sandor
Moustaizis, Stavros
and
Castillo, Reynaldo
2013.
Ultrahigh Acceleration of Plasma Blocks by Nonlinear Forces for Side-On Laser Ignition of Solid Density Fusion Fuel.
Plasma Science and Technology,
Vol. 15,
Issue. 5,
p.
420.
Paknezhad, Alireza
2015.
Brillouin-shifted third-harmonic backscattering of laser in a magnetized plasma.
Laser and Particle Beams,
Vol. 33,
Issue. 1,
p.
97.
Korn, Georg
Silva, Luis O.
Hora, Heinrich
Lalousis, Paraskevas
Giuffrida, Lorenzo
Margarone, Daniele
Korn, Georg
Eliezer, Shalom
Miley, Geroge H.
Moustaizis, Stavros
and
Mourou, Gérard
2015.
Petawatt laser pulses for proton-boron high gain fusion with avalanche reactions excluding problems of nuclear radiation.
Vol. 9515,
Issue. ,
p.
951518.
Wiescher, M.
deBoer, R. J.
Görres, J.
and
Azuma, R. E.
2017.
Low energy measurements of the
B10(p,α)Be7
reaction.
Physical Review C,
Vol. 95,
Issue. 4,
Rapisarda, G. G.
Spitaleri, C.
Cvetinović, A.
Spartà, R.
Cherubini, S.
Guardo, G. L.
Gulino, M.
La Cognata, M.
Lamia, L.
Pizzone, R. G.
Romano, S.
Sergi, M. L.
and
Tumino, A.
2018.
Study of the 10B(p,$\alpha_{1}$α1)7Be reaction by means of the Trojan Horse Method.
The European Physical Journal A,
Vol. 54,
Issue. 11,
Kolk, B. Vande
Macon, K. T.
deBoer, R. J.
Anderson, T.
Boeltzig, A.
Brandenburg, K.
Brune, C. R.
Chen, Y.
Clark, A. M.
Danley, T.
Frentz, B.
Giri, R.
Görres, J.
Hall, M.
Henderson, S. L.
Holmbeck, E.
Howard, K. B.
Jacobs, D.
Lai, J.
Liu, Q.
Long, J.
Manukyan, K.
Massey, T.
Moran, M.
Morales, L.
Odell, D.
O'Malley, P.
Paneru, S. N.
Richard, A.
Schneider, D.
Skulski, M.
Sensharma, N.
Seymour, C.
Seymour, G.
Soltesz, D.
Strauss, S.
Voinov, A.
Wüstrich, L.
and
Wiescher, M.
2022.
Investigation of the
B10(p,α)Be7
reaction from 0.8 to 2.0 MeV.
Physical Review C,
Vol. 105,
Issue. 5,