Isolated proton bunch acceleration by a petawatt laser pulse

被引:0
作者
P. Hilz
T. M. Ostermayr
A. Huebl
V. Bagnoud
B. Borm
M. Bussmann
M. Gallei
J. Gebhard
D. Haffa
J. Hartmann
T. Kluge
F. H. Lindner
P. Neumayr
C. G. Schaefer
U. Schramm
P. G. Thirolf
T .F. Rösch
F. Wagner
B. Zielbauer
J. Schreiber
机构
[1] Ludwig-Maximilians-Universität München,Fakultät für Physik
[2] Max-Planck-Institut für Quantenoptik,Macromolecular Chemistry Department
[3] Helmholtz-Zentrum Dresden - Rossendorf,undefined
[4] Technische Universität Dresden,undefined
[5] GSI Helmholtzzentrum für Schwerionenforschung,undefined
[6] Helmholtz-Institut Jena,undefined
[7] Goethe Universität Frankfurt,undefined
[8] Technische Universität Darmstadt,undefined
来源
Nature Communications | / 9卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Often, the interpretation of experiments concerning the manipulation of the energy distribution of laser-accelerated ion bunches is complicated by the multitude of competing dynamic processes simultaneously contributing to recorded ion signals. Here we demonstrate experimentally the acceleration of a clean proton bunch. This was achieved with a microscopic and three-dimensionally confined near critical density plasma, which evolves from a 1 µm diameter plastic sphere, which is levitated and positioned with micrometer precision in the focus of a Petawatt laser pulse. The emitted proton bunch is reproducibly observed with central energies between 20 and 40 MeV and narrow energy spread (down to 25%) showing almost no low-energetic background. Together with three-dimensional particle-in-cell simulations we track the complete acceleration process, evidencing the transition from organized acceleration to Coulomb repulsion. This reveals limitations of current high power lasers and viable paths to optimize laser-driven ion sources.
引用
收藏
相关论文
共 28 条
[1]  
Macchi A(2013)Ion acceleration by superintense laser-plasma interaction Rev. Mod. Phys. 85 751-793
[2]  
Borghesi M(2012)Review of laser-driven ion sources and their applications Rep. Prog. Phys. 75 056401-444
[3]  
Passoni M(2016)Invited Review Article: “Hands-on” laser-driven ion acceleration: a primer for laser-driven source development and potential applications Rev. Sci. Instrum. 87 071101-448
[4]  
Daido H(2016)Maximum proton energy above 85MeV from the relativistic interaction of laser pulses with micrometer thick CH2 targets Phys. Rev. Lett. 116 205002-99
[5]  
Nishiuchi M(2016)Radiation pressure acceleration of protons to 93MeV with circularly polarized petawatt laser pulses Phys. Plasmas 23 070701-778
[6]  
Pirozhkov AS(2006)Laser acceleration of quasi-monoenergetic MeV ion beams Nature 439 441-2839
[7]  
Schreiber J(2006)Laser-plasma acceleration of quasi-monoenergetic protons from microstructured targets Nature 439 445-108
[8]  
Bolton PR(2012)Generation of a quasi-monoergetic proton beam from laser-irradiated sub-micron droplets Phys. Plasmas 19 073112-undefined
[9]  
Parodi K(2016)Proton acceleration by irradiation of isolated spheres with an intense laser pulse Phys. Rev. E 94 033208-undefined
[10]  
Wagner F(2013)Stable laser-ion acceleration in the light sail regime Phys. Rev. Spec. Top. Accel. Beams 16 011303-undefined