Acceleration of high charge ion beams with achromatic divergence by petawatt laser pulses
Abstract
We present a study of laser-ion acceleration, where an increased laser spot size leads to sheath field geometries that accelerate ion beams of narrow and achromatic divergence at unprecedented charge densities, resulting from the high aspect ratio of the laser spot size to the acceleration distance. Matching the laser pulse length to the transverse laser spot size mitigated laser sweeping across the target front side and optimized the acceleration, with maximum energies deviating significantly from a linear intensity scaling.
- Authors:
- Publication Date:
- Research Org.:
- Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
- Sponsoring Org.:
- Alexander von Humboldt Foundation; USDOE Office of Science (SC), Fusion Energy Sciences (FES); USDOE Office of Science (SC), High Energy Physics (HEP)
- OSTI Identifier:
- 1601058
- Alternate Identifier(s):
- OSTI ID: 1619161
- Grant/Contract Number:
- AC02-05CH11231; AC02-06CH11357
- Resource Type:
- Published Article
- Journal Name:
- Physical Review Accelerators and Beams
- Additional Journal Information:
- Journal Name: Physical Review Accelerators and Beams Journal Volume: 23 Journal Issue: 2; Journal ID: ISSN 2469-9888
- Publisher:
- American Physical Society (APS)
- Country of Publication:
- United States
- Language:
- English
- Subject:
- 43 PARTICLE ACCELERATORS; high-energy-density plasmas; laboratory studies of space & astrophysical plasmas; laser driver ion acceleration; laser-plasma interactions; particle acceleration in plasmas; target normal sheath acceleration
Citation Formats
Steinke, S., Bin, J. H., Park, J., Ji, Q., Nakamura, K., Gonsalves, A. J., Bulanov, S. S., Thévenet, M., Toth, C., Vay, J. -L., Schroeder, C. B., Geddes, C. G. R., Esarey, E., Schenkel, T., and Leemans, W. P. Acceleration of high charge ion beams with achromatic divergence by petawatt laser pulses. United States: N. p., 2020.
Web. doi:10.1103/PhysRevAccelBeams.23.021302.
Steinke, S., Bin, J. H., Park, J., Ji, Q., Nakamura, K., Gonsalves, A. J., Bulanov, S. S., Thévenet, M., Toth, C., Vay, J. -L., Schroeder, C. B., Geddes, C. G. R., Esarey, E., Schenkel, T., & Leemans, W. P. Acceleration of high charge ion beams with achromatic divergence by petawatt laser pulses. United States. https://doi.org/10.1103/PhysRevAccelBeams.23.021302
Steinke, S., Bin, J. H., Park, J., Ji, Q., Nakamura, K., Gonsalves, A. J., Bulanov, S. S., Thévenet, M., Toth, C., Vay, J. -L., Schroeder, C. B., Geddes, C. G. R., Esarey, E., Schenkel, T., and Leemans, W. P. Wed .
"Acceleration of high charge ion beams with achromatic divergence by petawatt laser pulses". United States. https://doi.org/10.1103/PhysRevAccelBeams.23.021302.
@article{osti_1601058,
title = {Acceleration of high charge ion beams with achromatic divergence by petawatt laser pulses},
author = {Steinke, S. and Bin, J. H. and Park, J. and Ji, Q. and Nakamura, K. and Gonsalves, A. J. and Bulanov, S. S. and Thévenet, M. and Toth, C. and Vay, J. -L. and Schroeder, C. B. and Geddes, C. G. R. and Esarey, E. and Schenkel, T. and Leemans, W. P.},
abstractNote = {We present a study of laser-ion acceleration, where an increased laser spot size leads to sheath field geometries that accelerate ion beams of narrow and achromatic divergence at unprecedented charge densities, resulting from the high aspect ratio of the laser spot size to the acceleration distance. Matching the laser pulse length to the transverse laser spot size mitigated laser sweeping across the target front side and optimized the acceleration, with maximum energies deviating significantly from a linear intensity scaling.},
doi = {10.1103/PhysRevAccelBeams.23.021302},
journal = {Physical Review Accelerators and Beams},
number = 2,
volume = 23,
place = {United States},
year = {2020},
month = {2}
}
Free Publicly Available Full Text
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https://doi.org/10.1103/PhysRevAccelBeams.23.021302
https://doi.org/10.1103/PhysRevAccelBeams.23.021302
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Cited by: 14 works
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Works referenced in this record:
Review of laser-driven ion sources and their applications
journal, April 2012
- Daido, Hiroyuki; Nishiuchi, Mamiko; Pirozhkov, Alexander S.
- Reports on Progress in Physics, Vol. 75, Issue 5
Near-100 MeV protons via a laser-driven transparency-enhanced hybrid acceleration scheme
journal, February 2018
- Higginson, A.; Gray, R. J.; King, M.
- Nature Communications, Vol. 9, Issue 1
Enhanced proton beam collimation in the ultra-intense short pulse regime
journal, July 2014
- Green, J. S.; Dover, N. P.; Borghesi, M.
- Plasma Physics and Controlled Fusion, Vol. 56, Issue 8
Laser-driven 1 GeV carbon ions from preheated diamond targets in the break-out afterburner regime
journal, August 2013
- Jung, D.; Yin, L.; Gautier, D. C.
- Physics of Plasmas, Vol. 20, Issue 8
Generation and manipulation of proton beams by ultra-short laser pulses
conference, January 2009
- Nickles, P. V.; Schnürer, M.; Steinke, S.
- LASER-DRIVEN RELATIVISTIC PLASMAS APPLIED TO SCIENCE, INDUSTRY AND MEDICINE: 2nd International Symposium, AIP Conference Proceedings
On the small divergence of laser-driven ion beams from nanometer thick foils
journal, July 2013
- Bin, J. H.; Ma, W. J.; Allinger, K.
- Physics of Plasmas, Vol. 20, Issue 7
Towards Laser Driven Hadron Cancer Radiotherapy: A Review of Progress
journal, September 2014
- Ledingham, Ken; Bolton, Paul; Shikazono, Naoya
- Applied Sciences, Vol. 4, Issue 3
Maximum Proton Energy above 85 MeV from the Relativistic Interaction of Laser Pulses with Micrometer Thick Targets
journal, May 2016
- Wagner, F.; Deppert, O.; Brabetz, C.
- Physical Review Letters, Vol. 116, Issue 20
Laser ion acceleration for hadron therapy
journal, December 2014
- Bulanov, S. V.; Wilkens, J. J.; Esirkepov, T. Zh
- Physics-Uspekhi, Vol. 57, Issue 12
The scaling of proton energies in ultrashort pulse laser plasma acceleration
journal, April 2010
- Zeil, K.; Kraft, S. D.; Bock, S.
- New Journal of Physics, Vol. 12, Issue 4
Efficient ion acceleration by collective laser-driven electron dynamics with ultra-thin foil targets
journal, March 2010
- Steinke, S.; Henig, A.; Schnürer, M.
- Laser and Particle Beams, Vol. 28, Issue 1
Time resolved corpuscular diagnostics of plasmas produced with high-intensity femtosecond laser pulses
journal, March 2005
- Ter-Avetisyan, Sargis; Schnürer, Mathias; Nickles, Peter V.
- Journal of Physics D: Applied Physics, Vol. 38, Issue 6
Novel methods in the Particle-In-Cell accelerator Code-Framework Warp
journal, January 2012
- Vay, J-L; Grote, D. P.; Cohen, R. H.
- Computational Science & Discovery, Vol. 5, Issue 1
Laser-accelerated particle beams for stress testing of materials
journal, January 2018
- Barberio, M.; Scisciò, M.; Vallières, S.
- Nature Communications, Vol. 9, Issue 1
Petawatt class lasers worldwide
journal, January 2015
- Danson, Colin; Hillier, David; Hopps, Nicholas
- High Power Laser Science and Engineering, Vol. 3
Ion acceleration by superintense laser-plasma interaction
journal, May 2013
- Macchi, Andrea; Borghesi, Marco; Passoni, Matteo
- Reviews of Modern Physics, Vol. 85, Issue 2
Reflectance characterization of tape-based plasma mirrors
journal, June 2016
- Shaw, B. H.; Steinke, S.; van Tilborg, J.
- Physics of Plasmas, Vol. 23, Issue 6
Invited Review Article: “Hands-on” laser-driven ion acceleration: A primer for laser-driven source development and potential applications
journal, July 2016
- Schreiber, J.; Bolton, P. R.; Parodi, K.
- Review of Scientific Instruments, Vol. 87, Issue 7
Diagnostics, Control and Performance Parameters for the BELLA High Repetition Rate Petawatt Class Laser
journal, August 2017
- Nakamura, Kei; Mao, Hann-Shin; Gonsalves, Anthony J.
- IEEE Journal of Quantum Electronics, Vol. 53, Issue 4
Dependence on pulse duration and foil thickness in high-contrast-laser proton acceleration
journal, March 2010
- Flacco, A.; Sylla, F.; Veltcheva, M.
- Physical Review E, Vol. 81, Issue 3
Energetic proton generation in ultra-intense laser–solid interactions
journal, February 2001
- Wilks, S. C.; Langdon, A. B.; Cowan, T. E.
- Physics of Plasmas, Vol. 8, Issue 2, p. 542-549
Active Plasma Lensing for Relativistic Laser-Plasma-Accelerated Electron Beams
journal, October 2015
- van Tilborg, J.; Steinke, S.; Geddes, C. G. R.
- Physical Review Letters, Vol. 115, Issue 18
Fast ignition of inertial fusion targets by laser-driven carbon beams
journal, October 2009
- Honrubia, J. J.; Fernández, J. C.; Temporal, M.
- Physics of Plasmas, Vol. 16, Issue 10
Spatial Uniformity of Laser-Accelerated Ultrahigh-Current MeV Electron Propagation in Metals and Insulators
journal, December 2003
- Fuchs, J.; Cowan, T. E.; Audebert, P.
- Physical Review Letters, Vol. 91, Issue 25
Enhanced proton flux in the MeV range by defocused laser irradiation
journal, August 2010
- Green, J. S.; Carroll, D. C.; Brenner, C.
- New Journal of Physics, Vol. 12, Issue 8
Irradiation of materials with short, intense ion pulses at NDCX-II
journal, May 2017
- Seidl, P. A.; Barnard, J. J.; Feinberg, E.
- Laser and Particle Beams, Vol. 35, Issue 2
Enhancement of Proton Acceleration by Hot-Electron Recirculation in Thin Foils Irradiated by Ultraintense Laser Pulses
journal, May 2002
- Mackinnon, A. J.; Sentoku, Y.; Patel, P. K.
- Physical Review Letters, Vol. 88, Issue 21
Fundamental issues in fast ignition physics: from relativistic electron generation to proton driven ignition
journal, May 2003
- Macchi, A.; Antonicci, A.; Atzeni, S.
- Nuclear Fusion, Vol. 43, Issue 5
Statistical analysis of laser driven protons using a high-repetition-rate tape drive target system
journal, April 2017
- Noaman-ul-Haq, Muhammad; Ahmed, Hamad; Sokollik, Thomas
- Physical Review Accelerators and Beams, Vol. 20, Issue 4
Transport of laser accelerated proton beams and isochoric heating of matter
journal, August 2010
- Roth, M.; Alber, I.; Bagnoud, V.
- Journal of Physics: Conference Series, Vol. 244, Issue 1
Intense High-Energy Proton Beams from Petawatt-Laser Irradiation of Solids
journal, October 2000
- Snavely, R. A.; Key, M. H.; Hatchett, S. P.
- Physical Review Letters, Vol. 85, Issue 14
Fast Ignition by Intense Laser-Accelerated Proton Beams
journal, January 2001
- Roth, M.; Cowan, T. E.; Key, M. H.
- Physical Review Letters, Vol. 86, Issue 3, p. 436-439
Laser-driven proton scaling laws and new paths towards energy increase
journal, December 2005
- Fuchs, J.; Antici, P.; d’Humières, E.
- Nature Physics, Vol. 2, Issue 1
Ultrahigh-intensity laser-produced plasmas as a compact heavy ion injection source
journal, August 2000
- Krushelnick, K.; Clark, E. L.; Allott, R.
- IEEE Transactions on Plasma Science, Vol. 28, Issue 4
Not-so-resonant, resonant absorption
journal, July 1987
- Brunel, F.
- Physical Review Letters, Vol. 59, Issue 1
Multistage coupling of independent laser-plasma accelerators
journal, February 2016
- Steinke, S.; van Tilborg, J.; Benedetti, C.
- Nature, Vol. 530, Issue 7589
Fast Ion Generation by High-Intensity Laser Irradiation of Solid Targets and Applications
journal, April 2006
- Borghesi, M.; Fuchs, J.; Bulanov, S. V.
- Fusion Science and Technology, Vol. 49, Issue 3
Radiochromic film imaging spectroscopy of laser-accelerated proton beams
journal, March 2009
- Nürnberg, F.; Schollmeier, M.; Brambrink, E.
- Review of Scientific Instruments, Vol. 80, Issue 3
Fast ignitor concept with light ions
journal, December 2001
- Bychenkov, V. Yu.; Rozmus, W.; Maksimchuk, A.
- Plasma Physics Reports, Vol. 27, Issue 12
Radiation testing of semiconductor devices for space electronics
journal, January 1988
- Pease, R. L.; Johnston, A. H.; Azarewicz, J. L.
- Proceedings of the IEEE, Vol. 76, Issue 11
Laser-plasma-based Space Radiation Reproduction in the Laboratory
journal, February 2017
- Hidding, B.; Karger, O.; Königstein, T.
- Scientific Reports, Vol. 7, Issue 1
Works referencing / citing this record:
Acceleration of High Charge Ion Beams with Achromatic Divergence by Petawatt Laser Pulses
text, January 2020
- Steinke, S.; Bin, J. H.; Park, J.
- Deutsches Elektronen-Synchrotron, DESY, Hamburg
Figures / Tables found in this record:
Figures/Tables have been extracted from DOE-funded journal article accepted manuscripts.