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Phys. Rev. ST Accel. Beams 5, 061301 (2002) [8 pages]

Energetic ions generated by laser pulses: A detailed study on target properties

Citing Articles (106)
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106 citing articles found

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Show Only APS Citations

Journals

Physics of Plasmas (21)
Physical Review Letters (13)
Plasma Physics and Controlled Fusion (11)
Applied Physics Letters (7)
Physical Review E (7)
Journal of Applied Physics (5)
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equ (5)
IEEE Transactions on Plasma Science (4)
Review of Scientific Instruments (4)
New Journal of Physics (4)

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Years

2004 (14)
2008 (13)
2007 (13)
2011 (13)
2006 (12)
2005 (12)
2009 (11)
2010 (8)
2003 (5)
2012 (3)

(See all)

Data for non-APS articles provided by the publisher of the respective journals through CrossRef. Any errors or omissions are the responsibility of the primary publisher.

1.

Autocorrelation Measurement of Fast Electron Pulses Emitted through the Interaction of Femtosecond Laser Pulses with a Solid Target
Shunsuke Inoue, Shigeki Tokita, Kazuto Otani, Masaki Hashida, Masayasu Hata, Hitoshi Sakagami, Toshihiro Taguchi, and Shuji Sakabe
Phys. Rev. Lett. 109, 185001 (2012)

2.

Review of laser-driven ion sources and their applications
Hiroyuki Daido, Mamiko Nishiuchi, and Alexander S Pirozhkov
Reports on Progress in Physics 75, 056401 (2012)

3.

Using high-intensity laser-generated energetic protons to radiograph directly driven implosions
A. B. Zylstra, C. K. Li, H. G. Rinderknecht, F. H. Séguin, R. D. Petrasso, C. Stoeckl, D. D. Meyerhofer, P. Nilson, T. C. Sangster, S. Le Pape, A. Mackinnon, and P. Patel
Review of Scientific Instruments 83, 013511 (2012)

4.

Three-Dimensional Dynamics of Breakout Afterburner Ion Acceleration Using High-Contrast Short-Pulse Laser and Nanoscale Targets
L. Yin, B. J. Albright, K. J. Bowers, D. Jung, J. C. Fernández, and B. M. Hegelich
Phys. Rev. Lett. 107, 045003 (2011)

5.

Diagnostics of laser plasma plume dynamics within an electrically biased confining cavity
P. Yeates and E. T. Kennedy
Journal of Applied Physics 110, 063303 (2011)

6.

Hollow microspheres as targets for staged laser-driven proton acceleration
M Burza, A Gonoskov, G Genoud, A Persson, K Svensson, M Quinn, P McKenna, M Marklund, and C-G Wahlström
New Journal of Physics 13, 013030 (2011)

7.

Proton radiography of laser-driven imploding target in cylindrical geometry
L. Volpe et al.
Physics of Plasmas 18, 012704 (2011)

8.

Bright, low debris, ultrashort hard x-ray table top source using carbon nanotubes
Suman Bagchi, P. Prem Kiran, K. Yang, A. M. Rao, M. K. Bhuyan, M. Krishnamurthy, and G. Ravindra Kumar
Physics of Plasmas 18, 014502 (2011)

9.

A compact post-acceleration scheme for laser-generated protons
P. Antici, M. Migliorati, A. Mostacci, L. Picardi, L. Palumbo, and C. Ronsivalle
Physics of Plasmas 18, 073103 (2011)

10.

Charge resolved electrostatic diagnostic of colliding copper laser plasma plumes
P. Yeates, C. Fallon, E. T. Kennedy, and J. T. Costello
Physics of Plasmas 18, 103104 (2011)

11.

Proton radiography of cylindrical laser-driven implosions
L Volpe et al.
Plasma Physics and Controlled Fusion 53, 032003 (2011)

12.

On the investigation of fast electron beam filamentation in laser-irradiated solid targets using multi-MeV proton emission
M N Quinn, D C Carroll, X H Yuan, M Borghesi, R J Clarke, R G Evans, J Fuchs, P Gallegos, L Lancia, K Quinn, A P L Robinson, L Romagnani, G Sarri, C Spindloe, P A Wilson, D Neely, and P McKenna
Plasma Physics and Controlled Fusion 53, 124012 (2011)

13.

Proton acceleration using 50fs, high intensity ASTRA-Gemini laser pulses
R. Prasad, S. Ter-Avetisyan, D. Doria, K.E. Quinn, L. Romagnani, P.S. Foster, C.M. Brenner, J.S. Green, P. Gallegos, M.J.V. Streeter, D.C. Carroll, O. Tresca, N.P. Dover, C.A.J. Palmer, J. Schreiber, D. Neely, Z. Najmudin, P. McKenna, M. Zepf, and M. Borghesi
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equ 653, 113 (2011)

14.

Proton radiography in plasma
L. Volpe, D. Batani, A. Morace, Ph. Nicolai, C. Regan, and A. Ravasio
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equ 653, 17 (2011)

15.

Extensive comparison among Target Normal Sheath Acceleration theoretical models
Claudio Perego, Alessandro Zani, Dimitri Batani, and Matteo Passoni
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equ 653, 89 (2011)

16.

Femtosecond electron deflectometry for measuring transient fields generated by laser-accelerated fast electrons
Shunsuke Inoue, Shigeki Tokita, Kazuto Otani, Masaki Hashida, and Shuji Sakabe
Applied Physics Letters 99, 031501 (2011)

17.

Ultrafast Melting of Carbon Induced by Intense Proton Beams
A. Pelka, G. Gregori, D. O. Gericke, J. Vorberger, S. H. Glenzer, M. M. Günther, K. Harres, R. Heathcote, A. L. Kritcher, N. L. Kugland, B. Li, M. Makita, J. Mithen, D. Neely, C. Niemann, A. Otten, D. Riley, G. Schaumann, M. Schollmeier, An. Tauschwitz, and M. Roth
Phys. Rev. Lett. 105, 265701 (2010)

18.

Target normal sheath acceleration: theory, comparison with experiments and future perspectives
Matteo Passoni, Luca Bertagna, and Alessandro Zani
New Journal of Physics 12, 045012 (2010)

19.

Beam collimation and transport of quasineutral laser-accelerated protons by a solenoid field
K. Harres, I. Alber, A. Tauschwitz, V. Bagnoud, H. Daido, M. Günther, F. Nürnberg, A. Otten, M. Schollmeier, J. Schütrumpf, M. Tampo, and M. Roth
Physics of Plasmas 17, 023107 (2010)

20.

Transport of hot electron currents in solid targets irradiated by high intensity short laser pulses
P Antici, P Audebert, M Borghesi, T Cowan, L Gremillet, Y Sentoku, and J Fuchs
Journal of Physics: Conference Series 244, 022016 (2010)

21.

Optimization of flat-cone targets for enhanced laser-acceleration of protons
P. Antici, S. Gaillard, L. Gremillet, M. Amin, M. Nakatsutsumi, L. Romagnani, M. Tampo, T. Toncian, R. Kodama, P. Audebert, H. Pépin, O. Willi, M. Borghesi, T. Cowan, and J. Fuchs
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equ 620, 14 (2010)

22.

Measurement of the fast electron distribution in laser-plasma experiments in the context of the “fast ignition” approach to inertial confinement fusion
Dimitri Batani and Alessio Morace
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equ 623, 699 (2010)

23.

Single-shot microscopic electron imaging of intense femtosecond laser-produced plasmas
Shunsuke Inoue, Shigeki Tokita, Toshihiko Nishoji, Shinichiro Masuno, Kazuto Otani, Masaki Hashida, and Shuji Sakabe
Review of Scientific Instruments 81, 123302 (2010)

24.

Proton stopping using a full conserving dielectric function in plasmas at any degeneracy
Manuel D. Barriga-Carrasco
Phys. Rev. E 82, 046403 (2010)

25.

Dynamic control and enhancement of laser-accelerated protons using multiple laser pulses
David C. Carroll, Dimitri Batani, Roger G. Evans, Yannick Glinec, Christian Homann, Rashida Jafer, Satyabrata Kar, Filip Lindau, Olle Lundh, Keith Markey, David Neely, Frank Nürnberg, Anders Persson, Mark N. Quinn, Alex P.L. Robinson, Markus Roth, Claes-Göran Wahlström, Xiaohui Yuan, Matthew Zepf, and Paul McKenna
Comptes Rendus Physique 10, 188 (2009)

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