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Dive into the research topics where Maria Reuter is active.

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Featured researches published by Maria Reuter.


Nature Communications | 2013

Optical control of hard X-ray polarization by electron injection in a laser wakefield accelerator

Michael Schnell; Alexander Sävert; I. Uschmann; Maria Reuter; Maria Nicolai; Tino Kämpfer; Björn Landgraf; Oliver Jäckel; Oliver Jansen; A. Pukhov; Malte C. Kaluza; Christian Spielmann

Laser-plasma particle accelerators could provide more compact sources of high-energy radiation than conventional accelerators. Moreover, because they deliver radiation in femtosecond pulses, they could improve the time resolution of X-ray absorption techniques. Here we show that we can measure and control the polarization of ultra-short, broad-band keV photon pulses emitted from a laser-plasma-based betatron source. The electron trajectories and hence the polarization of the emitted X-rays are experimentally controlled by the pulse-front tilt of the driving laser pulses. Particle-in-cell simulations show that an asymmetric plasma wave can be driven by a tilted pulse front and a non-symmetric intensity distribution of the focal spot. Both lead to a notable off-axis electron injection followed by collective electron–betatron oscillations. We expect that our method for an all-optical steering is not only useful for plasma-based X-ray sources but also has significance for future laser-based particle accelerators.


Physical Review Letters | 2015

Direct observation of the injection dynamics of a laser wakefield accelerator using few-femtosecond shadowgraphy

Alexander Sävert; S. P. D. Mangles; Michael Schnell; Evangelos Siminos; J. M. Cole; M Leier; Maria Reuter; Matthew Schwab; Max Möller; K. Poder; Oliver Jäckel; G. G. Paulus; Christian Spielmann; Stefan Skupin; Z. Najmudin; Malte C. Kaluza

We present few-femtosecond shadowgraphic snapshots taken during the nonlinear evolution of the plasma wave in a laser wakefield accelerator with transverse synchronized few-cycle probe pulses. These snapshots can be directly associated with the electron density distribution within the plasma wave and give quantitative information about its size and shape. Our results show that self-injection of electrons into the first plasma-wave period is induced by a lengthening of the first plasma period. Three-dimensional particle-in-cell simulations support our observations.


LIGHT AT EXTREME INTENSITIES 2011 | 2012

Betatron radiation based measurement of the electron-beam size in a wakefield accelerator

Michael Schnell; Alexander Sävert; Björn Landgraf; Maria Reuter; Maria Nicolai; Oliver Jäckel; Christian Peth; Tobias Thiele; Oliver Jansen; A. Pukhov; O. Willi; Malte C. Kaluza; Christian Spielmann

We present a spatial and spectral characterization of a laser-plasma based betatron source which allows us to determine the betatron oscillation amplitude of the electrons which decreases with increasing electron energies. Due to the observed oscillation amplitude and the independently measured x-ray source size of (1.8±0.3)μm we are able to estimate the electron bunch diameter to be (1.6±0.3)μm.


Physical Review Letters | 2012

Deducing the Electron-Beam Diameter in a Laser-Plasma Accelerator Using X-Ray Betatron Radiation

Michael Schnell; Alexander Sävert; Björn Landgraf; Maria Reuter; Maria Nicolai; Oliver Jäckel; Christian Peth; Tobias Thiele; Oliver Jansen; A. Pukhov; O. Willi; M. C. Kaluza; Christian Spielmann


Optics Letters | 2016

54 J pulses with 18 nm bandwidth from a diode-pumped chirped-pulse amplification laser system

Marco Hornung; Hartmut Liebetrau; Sebastian Keppler; Alexander Kessler; Marco Hellwing; Frank Schorcht; Georg A. Becker; Maria Reuter; Jens Polz; Jörg Körner; Joachim Hein; Malte C. Kaluza


Radiation and Environmental Biophysics | 2015

Comparison study of in vivo dose response to laser-driven versus conventional electron beam

Melanie Oppelt; Michael Baumann; Ralf Bergmann; Elke Beyreuther; Kerstin Brüchner; Josefin Hartmann; L. Karsch; Mechthild Krause; L. Laschinsky; Elisabeth Leßmann; Maria Nicolai; Maria Reuter; Christian Richter; Alexander Sävert; Michael Schnell; M. Schürer; Julia Woithe; Malte C. Kaluza; Jörg Pawelke


Applied Physics B | 2014

Realizing a laser-driven electron source applicable for radiobiological tumor irradiation

Maria Nicolai; Alexander Sävert; Maria Reuter; Michael Schnell; Jens Polz; Oliver Jäckel; L. Karsch; M. Schürer; Melanie Oppelt; Jörg Pawelke; Malte C. Kaluza


High Intensity Lasers and High Field Phenomena | 2014

Characterizing Laser Plasma Electron Accelerators with Betatron Radiation

Michael Schnell; Alexander Sävert; Ingo Uschmann; Maria Reuter; Maria Nicolai; Tino Kämpfer; Björn Landgraf; Oliver Jansen; A. Pukhov; Malte C. Kaluza; Christian Spielmann


5th Int. Particle Accelerator Conf. (IPAC'14), Dresden, Germany, June 15-20, 2014 | 2014

Beam Transport System from a Laser Wakefield Accelerator to a Transverse Gradient Undulator

C. Widmann; Verónica Afonso Rodríguez; A. Bernhard; Nils Braun; Malte C. Kaluza; Anke-Susanne Müller; Maria Nicolai; Alexander Papash; Maria Reuter; R. Rossmanith; Alexander Sävert; Walter Werner


Archive | 2013

Non-linear beam transport optics for a laer Wakefield accelerator

C. Widmann; V. Afonso Rodriguez; A. Bernhard; Nils Braun; B. Härer; O. Jäckel; Maria Nicolai; P. Peiffer; Maria Reuter; T. Rinck; R. Rossmanith; Alexander Sävert; Michael Scheer; W. Werner; Tilo Baumbach; Malte C. Kaluza

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A. Pukhov

University of Düsseldorf

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A. Bernhard

Karlsruhe Institute of Technology

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