
Publications of Daniel Jung
All genres
Journal Article (16)
1.
Journal Article
15, 085015 (2013)
Laser-driven ion acceleration from relativistically transparent nanotargets. New Journal of Physics 2.
Journal Article
20 (8), 083103 (2013)
Laser-driven 1 GeV carbon ions from preheated diamond targets in the break-out afterburner regime. Physics of Plasma 3.
Journal Article
15, 015025 (2013)
Coherent synchrotron emission in transmission from ultrathin relativistic laser plasmas. New Journal of Physics 4.
Journal Article
8 (11), pp. 804 - 808 (2012)
Coherent synchrotron emission from electron nanobunches formed in relativistic laser-plasma interactions. Nature Physics 5.
Journal Article
29 (4), pp. 383 - 388 (2011)
Dynamics of nanometer-scale foil targets irradiated with relativistically intense laser pulses. Laser and Particle Beams 6.
Journal Article
29 (4), pp. 437 - 446 (2011)
Comparison of femtosecond laser-driven proton acceleration using nanometer and micrometer thick target foils. Laser and Particle Beams 7.
Journal Article
107 (11), 115002 (2011)
Monoenergetic Ion Beam Generation by Driving Ion Solitary Waves with Circularly Polarized Laser Light. Physical Review Letters 8.
Journal Article
51 (5 Sp. Iss. Sp. Iss. SI), pp. 444 - 450 (2011)
Optimization of Laser-Generated Ion Beams. Contributions to Plasma Physics 9.
Journal Article
82 (4), 043301 (2011)
A novel high resolution ion wide angle spectrometer. Review of Scientific Instruments 10.
Journal Article
82 (1), 013306 (2011)
Development of a high resolution and high dispersion Thomson parabola. Review of Scientific Instruments 11.
Journal Article
28 (1), pp. 215 - 221 (2010)
Efficient ion acceleration by collective laser-driven electron dynamics with ultra-thin foil targets. Laser and Particle Beams 12.
Journal Article
103 (24), 245003 (2009)
Radiation-Pressure Acceleration of Ion Beams Driven by Circularly Polarized Laser Pulses. Physical Review Letters 13.
Journal Article
55 (2), pp. 427 - 432 (2009)
First observation of quasi-monoenergetic electron bunches driven out of ultra-thin diamond-like carbon (DLC) foils. European Physical Journal D 14.
Journal Article
55 (2), pp. 379 - 389 (2009)
Signatures of the Unruh effect via high-power, short-pulse lasers. European Physical Journal D 15.
Journal Article
103 (4), 045002 (2009)
Enhanced Laser-Driven Ion Acceleration in the Relativistic Transparency Regime. Physical Review Letters 16.
Journal Article
93 (2-3 Sp. Iss. Sp. Iss. SI), pp. 349 - 354 (2008)
Dense laser-driven electron sheets as relativistic mirrors for coherent production of brilliant X-ray and γ-ray beams. Applied Physics B - Lasers and Optics Conference Paper (1)
17.
Conference Paper
Preparation of self-supporting diamond-like carbon nanofoils with thickness less than 5 nm for laser-driven ion acceleration. 25th World Conference of the International-Nuclear-Target-Development-Society(INTDS), Vancouver, Canada, September 12, 2010 - September 17, 2010. Nuclear Instruments & Methods in Physics Research Section A-Accelerators Spectrometers Detectors and Associated Equipment (1), pp. 53 - 56 (2011)