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Dive into the research topics where E. Birgersson is active.

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Featured researches published by E. Birgersson.


Physical Review Letters | 2014

Nuclear deformation and neutron excess as competing effects for dipole strength in the pygmy region.

R. Massarczyk; R. Schwengner; F. Dönau; S. Frauendorf; M. Anders; D. Bemmerer; R. Beyer; C. Bhatia; E. Birgersson; Maik Butterling; Z. Elekes; A. Ferrari; M. E. Gooden; R. Hannaske; A. R. Junghans; M. Kempe; J. H. Kelley; T. Kögler; A. Matic; M. Menzel; S. Müller; T. P. Reinhardt; M. Röder; G. Rusev; K. D. Schilling; Konrad Schmidt; G. Schramm; A. P. Tonchev; W. Tornow; A. Wagner

The electromagnetic dipole strength below the neutron-separation energy has been studied for the xenon isotopes with mass numbers A=124, 128, 132, and 134 in nuclear resonance fluorescence experiments using the γELBE bremsstrahlung facility at Helmholtz-Zentrum Dresden-Rossendorf and the HIγS facility at Triangle Universities Nuclear Laboratory Durham. The systematic study gained new information about the influence of the neutron excess as well as of nuclear deformation on the strength in the region of the pygmy dipole resonance. The results are compared with those obtained for the chain of molybdenum isotopes and with predictions of a random-phase approximation in a deformed basis. It turned out that the effect of nuclear deformation plays a minor role compared with the one caused by neutron excess. A global parametrization of the strength in terms of neutron and proton numbers allowed us to derive a formula capable of predicting the summed E1 strengths in the pygmy region for a wide mass range of nuclides.


European Physical Journal A | 2013

Neutron total cross section measurements of gold and tantalum at the nELBE photoneutron source

R. Hannaske; Zoltan Elekes; R. Beyer; A. R. Junghans; D. Bemmerer; E. Birgersson; A. Ferrari; E. Grosse; Mathias Kempe; T. Kögler; M. Marta; R. Massarczyk; A. Matic; G. Schramm; R. Schwengner; A. Wagner

Neutron total cross sections of 197Au and natTa have been measured at the nELBE photoneutron source in the energy range 0.1–10MeV with a statistical uncertainty of up to 2% and a total systematic uncertainty of 1%. This facility is optimized for the fast neutron energy range and combines an excellent time structure of the neutron pulses (electron bunch width 5ps) with a short flight path of 7m. Because of the low instantaneous neutron flux transmission measurements of neutron total cross sections are possible, that exhibit very different beam and background conditions than found at other neutron sources.


International Journal of Modern Physics E-nuclear Physics | 2011

ELECTROMAGNETIC STRENGTH IN HEAVY NUCLEI - EXPERIMENTS AND A GLOBAL FIT

R. Beyer; E. Birgersson; A. R. Junghans; R. Massarczyk; Georg Schramm; R. Schwengner; E. Grosse

A global parameterization is presented for the electromagnetic strength in heavy nuclei which gives a rather good fit to respective data in nuclei with mass numbers A between 50 and 240. It relies on a Lorentzian description of the isovector giant dipole resonance and it needs only a very small number of parameters to describe the electric dipole strength down to low excitation energy of importance for radiative capture processes. The resonance energies are chosen to be in accordance to liquid drop model parameters adjusted to ground state masses and to rotation invariant determinations of ground state deformation and triaxiality. By a straightforward use of this information a surprisingly smooth variation of the GDR width with A and Z is found and a full agreement to the predictions of the electromagnetic sum rule is assured. Predictions for radiative neutron capture cross sections compare well to respective data, when the proposed photon strength function is combined with standard prescriptions for the level density in the product nuclei.


Journal of Physics: Conference Series | 2016

Measurement of the photodissociation of the deuteron at energies relevant to Big Bang nucleosynthesis

R. Hannaske; D. Bemmerer; R. Beyer; E. Birgersson; A. Ferrari; E. Grosse; A. R. Junghans; M. Kempe; T. Kögler; K Kosev; M. Marta; R. Massarczyk; A. Matic; K D Schilling; G. Schramm; R. Schwengner; A. Wagner; D. Yakorev

The photodissociation of the deuteron is a key reaction in Big Bang nucleosynthesis, but is only sparsely measured in the relevant energy range. To determine the cross section of the d(γ,n)p reaction we used pulsed bremsstrahlung and measured the time-of-flight of the neutrons. In this article, we describe how the efficiency of the neutron detectors was experimentally determined and how the modification of the neutron spectrum by parts of the experimental setup was simulated and corrected.


Proceedings of the Fourteenth International Symposium | 2013

EXPERIMENTS WITH NEUTRONS AND PHOTONS AT ELBE

R. Schwengner; R. Beyer; A. R. Junghans; R. Massarczyk; G. Schramm; D. Bemmerer; E. Birgersson; A. Ferrari; E. Grosse; R. Hannaske; M. Kempe; T. Kögler; A. Matic; K. D. Schilling; A. Wagner; G. Rusev; Ayano Makinaga; T Belgya; Z Kis; L Szentmiklosi; J. L Weil; F. Bečvář; M. Krticka

We describe the photo-neutron source at the superconducting electron accelerator ELBE of the Helmholtz-Zentrum Dresden-Rossendorf and present first experiments to determine cross sections of inelastic scattering of neutrons in the MeV range. We discuss analysis and results of photon-scattering experiments using the bremsstrahlung facility at ELBE. A consistent determination of the dipole strength function from the combination of photon scattering and radiative neutron capture is presented.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2013

Characterization of the neutron beam at nELBE

R. Beyer; E. Birgersson; Z. Elekes; A. Ferrari; E. Grosse; R. Hannaske; A. R. Junghans; T. Kögler; R. Massarczyk; A. Matic; R. Nolte; R. Schwengner; A. Wagner


Physical Review C | 2013

Electromagnetic dipole strength up to the neutron separation energy from 196Pt(γ,γ′) and 195Pt(n,γ) reactions

R. Massarczyk; G. Schramm; A. R. Junghans; R. Schwengner; M. Anders; T. Belgya; R. Beyer; E. Birgersson; A. Ferrari; E. Grosse; R. Hannaske; Z. Kis; T. Kögler; K. Kosev; M. Marta; L. Szentmiklósi; A. Wagner; J. L. Weil


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2013

Light yield and n–γ pulse-shape discrimination of liquid scintillators based on linear alkyl benzene

T. Kögler; R. Beyer; E. Birgersson; R. Hannaske; A. R. Junghans; R. Massarczyk; A. Matic; A. Wagner; K. Zuber


EPJ Web of Conferences | 2010

Photon strength function deduced from photon scattering and neutron capture

R. Massarczyk; E. Birgersson; G. Schramm; R. Schwengner; T Belgya; R. Beyer; E. Grosse; R. Hannaske; A. R. Junghans; A. Matic; L. Szentimiklosi; J. L Weil; A. Wagner


EPJ Web of Conferences | 2017

Inelastic scattering of fast neutrons from 56Fe

R. Beyer; E. Birgersson; Mirco Dietz; R. Hannaske; A. R. Junghans; T. Kögler; R. Massarczyk; A. Matic; R. Schwengner; A. Wagner; A. Plompen; Franz-Josef Hambsch; P. Schillebeeckx; W. Mondelaers; Joerg Heyse; S. Kopecky; P. Siegler; S. Oberstedt

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Dive into the E. Birgersson's collaboration.

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A. R. Junghans

Helmholtz-Zentrum Dresden-Rossendorf

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R. Beyer

Helmholtz-Zentrum Dresden-Rossendorf

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R. Massarczyk

Helmholtz-Zentrum Dresden-Rossendorf

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R. Schwengner

Helmholtz-Zentrum Dresden-Rossendorf

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A. Wagner

Helmholtz-Zentrum Dresden-Rossendorf

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E. Grosse

Dresden University of Technology

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R. Hannaske

Dresden University of Technology

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A. Matic

Helmholtz-Zentrum Dresden-Rossendorf

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G. Schramm

Dresden University of Technology

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T. Kögler

Helmholtz-Zentrum Dresden-Rossendorf

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