1.

Conformal symmetry of QCD in d dimensions
/ Braun, V.M. ; Manashov, A.N. ; Moch, S.O. ; Strohmaier, M.
QCD in d=4−2ϵ spacetime dimensions possesses a nontrivial critical point and there are good reasons to expect that this theory restricted to the gaugeinvariant subsector is conformally invariant. [...]
Published in Physics letters B (2019)
10.1016/j.physletb.2019.04.027
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2.

Twoloop evolution equations for flavorsinglet lightray operators
/ Braun, V. ; Manashov, A. ; Moch, S. ; Strohmaier, M.
QCD in noninteger d = 4 − 2 ϵ spacetime dimensions enjoys conformal invariance at the special finetuned value of the coupling. [...]
Published in JHEP 1902 (2019) 191
10.1007/JHEP02(2019)191
arXiv:1901.06172
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3.

Fiveloop contributions to low N nonsinglet anomalous dimensions in QCD
/ Herzog, F. ; Moch, S. ; Ruijl, B. ; Ueda, T. ; et al
We present the first calculations of nexttonexttonexttonexttoleading order (N 4 LO) contributions to anomalous dimensions of spin N twist2 operators in perturbative QCD. [...]
Published in Physics letters B 790 (2019) 436443
10.1016/j.physletb.2019.01.060
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4.

On quartic colour factors in splitting functions and the gluon cusp anomalous dimension
/ Moch, S. ; Ruijl, B. ; Ueda, T. ; Vermaseren, J.A.M. ; et al
We have computed the contributions of the quartic Casimir invariants to the fourloop anomalous dimensions of twist2 spin N operators at N≤16 . [...]
Published in Physics letters B (2018)
10.1016/j.physletb.2018.06.017
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5.

NLO PDFs from the ABMP16 fit
/ Alekhin, S. ; Blümlein, J. ; Moch, S.
We perform a global fit of parton distribution functions (PDFs) together with the strong coupling constant αs and the quark masses mc , mb and mt at nexttoleading order (NLO) in QCD. [...]
Published in EPJC 78 (2018) 477
10.1140/epjc/s1005201859471
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6.

Phenomenology of singleinclusive jet production with jet radius and threshold resummation
/ Liu, Xiaohui ; Moch, SvenOlaf ; Ringer, Felix
We perform a detailed study of inclusive jet production cross sections at the LHC and compare the QCD theory predictions based on the recently developed formalism for threshold and jet radius joint resummation at nexttoleading logarithmic accuracy to inclusive jet data collected by the CMS Collaboration at $\sqrt{S}=7$ and 13 TeV. [...]
Published in Phys. Rev. D 97 (2018)
10.1103/PhysRevD.97.056026
arXiv:1801.07284
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7.

Strange sea determination from collider data
/ Alekhin, S. ; Blümlein, J. ; Moch, S.
We consider determinations of the strange sea in the nucleon based on QCD analyses of data collected at the LHC with focus on the recent highstatistics ATLAS measurement of the W±  and Z boson production. [...]
Published in Physics letters B (2017)
10.1016/j.physletb.2017.12.024
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8.

Prompt neutrinos from atmospheric charm in the generalmass variableflavornumber scheme
/ Benzke, M. ; Garzelli, M. ; Kniehl, B. ; Kramer, G. ; et al
We present predictions for the promptneutrino flux arising from the decay of charmed mesons and baryons produced by the interactions of highenergy cosmic rays in the Earth’s atmosphere, making use of a QCD approach on the basis of the generalmass variableflavornumber scheme for the description of charm hadroproduction at NLO, complemented by a consistent set of fragmentation functions. [...]
Published in JHEP 1712 (2017) 021
10.1007/JHEP12(2017)021
arXiv:1705.10386
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9.

Running of the charmquark mass from HERA deepinelastic scattering data
/ Gizhko, A. ; Geiser, A. ; Moch, S. ; Abt, I. ; et al
Combined HERA data on charm production in deepinelastic scattering have previously been used to determine the charmquark running mass mc(mc) in the MS‾ renormalisation scheme. [...]
Published in Physics letters B (2017)
10.1016/j.physletb.2017.11.002
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10.

Fourloop nonsinglet splitting functions in the planar limit and beyond
/ Moch, S. ; Ruijl, B. ; Ueda, T. ; Vermaseren, J. ; et al
We present the nexttonexttonexttoleading order (N 3 LO) contributions to the nonsinglet splitting functions for both parton distribution and fragmentation functions in perturbative QCD. [...]
Published in JHEP 1710 (2017) 041
10.1007/JHEP10(2017)041
arXiv:1707.08315
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