A Roadmap for HEP Software and Computing R&D for the 2020s
Computing and Software for Big Science Springer Nature 3:1 (2019) 7
Abstract:
Particle physics has an ambitious and broad experimental programme for the coming decades. This programme requires large investments in detector hardware, either to build new facilities and experiments, or to upgrade existing ones. Similarly, it requires commensurate investment in the R&D of software to acquire, manage, process, and analyse the shear amounts of data to be recorded. In planning for the HL-LHC in particular, it is critical that all of the collaborating stakeholders agree on the software goals and priorities, and that the efforts complement each other. In this spirit, this white paper describes the R&D activities required to prepare for this software upgrade.Measurements of top-quark pair spin correlations in the $eμ$ channel at $\sqrt{s} = 13$ TeV using $pp$ collisions in the ATLAS detector
ArXiv 1903.0757 (2019)
Search for high-mass dilepton resonances using 139 fb$^{-1}$ of $pp$ collision data collected at $\sqrt{s}=$13 TeV with the ATLAS detector
ArXiv 1903.06248 (2019)
Measurement of $VH$, $H\to b\bar{b}$ production as a function of the vector-boson transverse momentum in 13 TeV $pp$ collisions with the ATLAS detector
ArXiv 1903.04618 (2019)
Measurement of jet-substructure observables in top quark, $W$ boson and light jet production in proton-proton collisions at $\sqrt{s}=13$ TeV with the ATLAS detector
ArXiv 1903.02942 (2019)