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B. Löhr

Researcher at University of Bonn

Publications -  144
Citations -  5150

B. Löhr is an academic researcher from University of Bonn. The author has contributed to research in topics: HERA & Electron–positron annihilation. The author has an hindex of 37, co-authored 140 publications receiving 5010 citations.

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Evidence for planar events in e+e− annihilation at high energies

TL;DR: Hadron jets produced in e+e− annihilation between 13 GeV and 31.6 GeV in c.m. energy at PETRA are analyzed in this article, showing that the broadening of the jets is not uniform in azimuthal angle around the quark direction but tends to yield planar events with large and growing transverse momenta in the plane and smaller transverse momentsa normal to the plane.
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Observation of events with a large rapidity gap in deep inelastic scattering at HERA

M. Derrick, +462 more
- 07 Oct 1993 - 
TL;DR: In this article, neutral current scattering of electrons and protons at square-root s = 296 GeV was observed in the ZEUS detector events with a large rapidity gap in the hadronic final state.
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Measurement of the proton structure function F2 in ep scattering at HERA

M. Derrick, +467 more
- 21 Oct 1993 - 
TL;DR: In this article, the first measurement of the F 2 structure function in neutral-current, deep inelastic scattering using the ZEUS detector at HERA, the ep colliding beam facility at DESY, was presented.
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ZEUS next-to-leading-order QCD analysis of data on deep inelastic scattering

Sergei Chekanov, +352 more
- 01 Jan 2003 - 
TL;DR: In this paper, the results of a next-to-leading-order QCD analysis of the ZEUS data on deep inelastic scattering together with fixed-target data were performed, from which the gluon and quark densities of the proton and the value of the strong coupling constant alpha(s)(M-Z) were extracted.
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A measurement of σtot(γp) at S = 210 GeV

M. Derrick, +462 more
- 29 Oct 1992 - 
TL;DR: In this paper, the total photoproduction cross section was determined from a measurement of electroproduction with the ZEUS detector at HERA, and the Q2 values of the virtual photons were in the range 10−7