
Publications of Daniel Jung
All genres
Journal Article (16)
1.
Journal Article
: Laser-driven ion acceleration from relativistically transparent nanotargets. New Journal of Physics 15, 085015 (2013)
2.
Journal Article
: Laser-driven 1 GeV carbon ions from preheated diamond targets in the break-out afterburner regime. Physics of Plasma 20 (8), 083103 (2013)
3.
Journal Article
: Coherent synchrotron emission in transmission from ultrathin relativistic laser plasmas. New Journal of Physics 15, 015025 (2013)
4.
Journal Article
: Coherent synchrotron emission from electron nanobunches formed in relativistic laser-plasma interactions. Nature Physics 8 (11), pp. 804 - 808 (2012)
5.
Journal Article
: Dynamics of nanometer-scale foil targets irradiated with relativistically intense laser pulses. Laser and Particle Beams 29 (4), pp. 383 - 388 (2011)
6.
Journal Article
: Comparison of femtosecond laser-driven proton acceleration using nanometer and micrometer thick target foils. Laser and Particle Beams 29 (4), pp. 437 - 446 (2011)
7.
Journal Article
: Monoenergetic Ion Beam Generation by Driving Ion Solitary Waves with Circularly Polarized Laser Light. Physical Review Letters 107 (11), 115002 (2011)
8.
Journal Article
: Optimization of Laser-Generated Ion Beams. Contributions to Plasma Physics 51 (5 Sp. Iss. Sp. Iss. SI), pp. 444 - 450 (2011)
9.
Journal Article
: A novel high resolution ion wide angle spectrometer. Review of Scientific Instruments 82 (4), 043301 (2011)
10.
Journal Article
: Development of a high resolution and high dispersion Thomson parabola. Review of Scientific Instruments 82 (1), 013306 (2011)
11.
Journal Article
: Efficient ion acceleration by collective laser-driven electron dynamics with ultra-thin foil targets. Laser and Particle Beams 28 (1), pp. 215 - 221 (2010)
12.
Journal Article
: Radiation-Pressure Acceleration of Ion Beams Driven by Circularly Polarized Laser Pulses. Physical Review Letters 103 (24), 245003 (2009)
13.
Journal Article
: First observation of quasi-monoenergetic electron bunches driven out of ultra-thin diamond-like carbon (DLC) foils. European Physical Journal D 55 (2), pp. 427 - 432 (2009)
14.
Journal Article
: Signatures of the Unruh effect via high-power, short-pulse lasers. European Physical Journal D 55 (2), pp. 379 - 389 (2009)
15.
Journal Article
: Enhanced Laser-Driven Ion Acceleration in the Relativistic Transparency Regime. Physical Review Letters 103 (4), 045002 (2009)
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)