1.

Proton charge radius extraction from electron scattering data using dispersively improved chiral effective field theory
/ Alarcón, J.M. ; Higinbotham, D.W. ; Weiss, C. ; Ye, Zhihong
We extract the proton charge radius from the elastic form factor (FF) data using a novel theoretical framework combining chiral effective field theory and dispersion analysis. [...]
Published in Physical Review C 99 (2019)
10.1103/PhysRevC.99.044303
arXiv:1809.06373
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2.

Measurement of 73 Ge( n , γ ) cross sections and implications for stellar nucleosynthesis
/ LedererWoods, C. ; Battino, U. ; Ferreira, P. ; Gawlik, A. ; et al
73 Ge( n,γ ) cross sections were measured at the neutron timeofflight facility n_TOF at CERN up to neutron energies of 300 keV, providing for the first time experimental data above 8 keV. [...]
Published in Physics letters B 790 (2019) 458465
10.1016/j.physletb.2019.01.045
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3.

Reduction of storedparticle background by a magnetic pulse method at the KATRIN experiment
/ Arenz, M. ; Baek, W.J. ; Bauer, S. ; Beck, M. ; et al
The KATRIN experiment aims to determine the effective electron neutrino mass with a sensitivity of 0.2eV/c2 (%90 CL) by precision measurement of the shape of the tritium β spectrum in the endpoint region. [...]
Published in EPJC 78 (2018) 778
10.1140/epjc/s1005201862448
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4.

Accurate nucleon electromagnetic form factors from dispersively improved chiral effective field theory
/ Alarcón, J.M. ; Weiss, C.
We present a theoretical parametrization of the nucleon electromagnetic form factors (FFs) based on a combination of chiral effective field theory and dispersion analysis. [...]
Published in Physics letters B (2018)
10.1016/j.physletb.2018.07.060
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5.

Calibration of high voltages at the ppm level by the difference of 83m Kr conversion electron lines at the KATRIN experiment
/ Arenz, M. ; Baek, W.J. ; Beck, M. ; Beglarian, A. ; et al
The neutrino mass experiment KATRIN requires a stability of 3 ppm for the retarding potential at − 18.6 kV of the main spectrometer. [...]
Published in EPJC 78 (2018) 368
10.1140/epjc/s100520185832y
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6.

Nucleon form factors in dispersively improved chiral effective field theory. II. Electromagnetic form factors
/ Alarcón, J.M. ; Weiss, C.
We study the nucleon electromagnetic form factors (EM FFs) using a recently developed method combining chiral effective field theory ($\chi \mathrm{EFT}$) and dispersion analysis. [...]
Published in Physical Review C 97 (2018)
10.1103/PhysRevC.97.055203
arXiv:1710.06430
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7.

Electrondeuteron deepinelastic scattering with spectator nucleon tagging and finalstate interactions at intermediate $x$
/ Strikman, M. ; Weiss, C.
We consider electrondeuteron deepinelastic scattering (DIS) with detection of a proton in the nuclear fragmentation region (“spectator tagging”) as a method for extracting the free neutron structure functions and studying their nuclear modifications. [...]
Published in Phys. Rev. C 97 (2018)
10.1103/PhysRevC.97.035209
arXiv:1706.02244
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8.

Fullydifferential toppair production at a lepton collider: from threshold to continuum
/ Bach, Fabian ; Nejad, Bijan ; Hoang, André ; Kilian, Wolfgang ; et al
We present an approach to predict exclusive W + b W − b ¯ $$ {W}^{+}b{W}^{}\overline{b} $$ production at lepton colliders that correctly describes the topantitop threshold as well as the continuum region. [...]
Published in JHEP 1803 (2018) 184
10.1007/JHEP03(2018)184
arXiv:1712.02220
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9.

NLO QCD predictions for offshell t t ¯ $$ t\overline{t} $$ and t t ¯ H $$ t\overline{t}H $$ production and decay at a linear collider
/ Nejad, Bijan ; Kilian, Wolfgang ; Lindert, Jonas ; Pozzorini, Stefano ; et al
We present predictions for t t ¯ $$ t\overline{t} $$ and t t ¯ H $$ t\overline{t}H $$ production and decay at future lepton colliders including nonresonant and interference contributions up to nexttoleading order (NLO) in perturbative QCD. [...]
Published in JHEP 1612 (2016) 075
10.1007/JHEP12(2016)075
arXiv:1609.03390
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10.

Lightfront representation of chiral dynamics with Δ isobar and large N c relations
/ Granados, C. ; Weiss, C.
Transverse densities describe the spatial distribution of electromagnetic current in the nucleon at fixed lightfront time. [...]
Published in JHEP 1606 (2016) 075
10.1007/JHEP06(2016)075
arXiv:1603.08881
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