Sherpa - Monte Carlo event generator for the Simulation of High-Energy Reactions of PArticles
Sherpa is a Monte Carlo event generator for the Simulation of High-Energy Reactions of PArticles in lepton-lepton, lepton-photon, photon-photon, lepton-hadron and hadron-hadron collisions.
- Sources inherited from project openSUSE:Leap:15.1
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Source Files
Filename | Size | Changed |
---|---|---|
SHERPA-MC-2.2.6.tar.gz | 0009063214 8.64 MB | |
SHERPA-MC-no-return-in-non-void-function.patch | 0000000829 829 Bytes | |
SHERPA-MC.changes | 0000012015 11.7 KB | |
SHERPA-MC.spec | 0000007173 7 KB |
Latest Revision
Yuchen Lin (maxlin_factory)
accepted
request 677728
from
Atri Bhattacharya (badshah400)
(revision 13)
- Refresh source tarball: updated by upstream without version change or listing changes. - Use %%license to install COPYING file. - Minor specfile cleanups. - Update to version 2.2.6: * Add initial-state p_z and inelasticity selectors for DIS (#80) * Improve the reweighting to include the local K=BBar/B factor in MEPS@NLO runs (#73) * Improve treatment of the shower reweighting scale cut-off, it is now applied also when reweighting AlphaS and the PDFs in the CKKW clustering sequence (also mentioned in #73) * Adapt status=4 convention in the short HepMC output (#79) * Compute approximate NLO EW corrections (and subleading orders) as on-the-fly alternative event weights (#41). See Example in Manual for details. Currently only works with a soon-to-be-released version of OpenLoops. * Add a filter between the perturbative and the non-perturbative event phase, which can be used to reject events with parton-level cuts (!94) * Bug fixes: - Fix NLO and Variable Selector routines (#70, #88) - Fix unweighting treatment for the LocalKFactor (and its on-the-fly variations) in negative events (#94) - Fix argument validation in GGH_KFactor_Setter::ClusterMassCorrectionFactor - Fix core scale setter for DIS when the incoming particles are ordered ep instead of pe and adapt it for ee->xy (where xy is not a quark pair) (!81) - Fix strong coupling reweighting in merging runs in cases
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