Bright laser-driven neutron source based on the relativistic transparency of solids.
暂无分享,去创建一个
Andrea Favalli | M. Devlin | Carl Wilde | Kurt F. Schoenberg | Florian Wagner | Glen A. Wurden | Christopher E. Hamilton | Daniel Jung | O. Deppert | Stephen A. Wender | Markus Roth | M. Geissel | Robert C. Haight | Terry N. Taddeucci | F. E. Merrill | Katerina Falk | Juan C. Fernandez | Donald C. Gautier | Marius Schollmeier | T. Shimada | M. Geissel | S. Wender | R. Haight | R. Johnson | Carlos Segovia Fernández | M. Schollmeier | N. Guler | F. Merrill | C. Wilde | G. Wurden | T. Shimada | M. Roth | K. Schoenberg | K. Falk | D. Gautier | D. Jung | B. Hegelich | Bjorn Hegelich | Randall P. Johnson | N. Guler | G. Schaumann | A. Favalli | O. Deppert | Gabriel Schaumann | J. L. Tybo | T. Taddeucci | F. Wagner | C. Hamilton | M. Devlin | J. Tybo
[1] Mark D. Wilke,et al. Progress on neutron pinhole imaging for inertial confinement fusion experiments , 2004 .
[2] Andy Buffler,et al. Contraband detection with fast neutrons , 2004 .
[3] J. Frenje,et al. Production of neutrons up to 18 MeV in high-intensity, short-pulse laser matter interactions , 2011 .
[4] B. Albright,et al. A novel high resolution ion wide angle spectrometer. , 2011, The Review of scientific instruments.
[5] P. Audebert,et al. Laser-driven proton scaling laws and new paths towards energy increase , 2006 .
[6] A. Seifter,et al. TRIDENT high-energy-density facility experimental capabilities and diagnostics. , 2008, The Review of scientific instruments.
[7] Michael D. Perry,et al. The investigation of high intensity laser driven micro neutron sources for fusion materials research at high fluence , 2000 .
[8] Brian James Albright,et al. Monoenergetic and GeV ion acceleration from the laser breakout afterburner using ultrathin targets , 2007 .
[9] Edward B. Clark,et al. Characterization of 7Li(p,n)7Be neutron yields from laser produced ion beams for fast neutron radiography , 2004 .
[10] Brian James Albright,et al. GeV laser ion acceleration from ultrathin targets: The laser break-out afterburner , 2006 .
[11] M. W. Mallett,et al. High-energy response of passive dosemeters in use at LANL. , 2007, Radiation protection dosimetry.
[12] T. C. Sangster,et al. Intense high-energy proton beams from Petawatt-laser irradiation of solids. , 2000, Physical review letters.
[13] K. Tanaka,et al. Laser generated neutron source for neutron resonance spectroscopy , 2010 .
[14] Michael D. Perry,et al. Electron, photon, and ion beams from the relativistic interaction of Petawatt laser pulses with solid targets , 2000 .
[15] S. Iizuka,et al. Buneman Instability, Pierce Instability, and Double-Layer Formation in a Collisionless Plasma , 1979 .
[16] K. Flippo,et al. Laser acceleration of quasi-monoenergetic MeV ion beams , 2006, Nature.
[17] Deanna M. Pennington,et al. Energetic proton generation in ultra-intense laser–solid interactions , 2000 .
[18] David Neely,et al. Scaling of proton acceleration driven by petawatt-laser-plasma interactions , 2007 .
[19] O Willi,et al. Multi-MeV proton source investigations in ultraintense laser-foil interactions. , 2004, Physical review letters.