The LHCb collaboration presents a novel suite of heavy-flavour jet substructure measurements at forward rapidity in proton-proton collisions at a centre-of-mass energy of √s = 13 TeV. The jet mass is a perturbatively calculable probe of the virtuality of hard-scattered quarks and gluons, connecting small-distance quantum chromodynamics (QCD) with long-distance experimental measurement. It becomes dominated by nonperturbative corrections at small values, presenting an excellent test of QCD across a broad range of energies. Measuring heavy-flavour jet mass with a theoretically unambiguous flavour definition for the first time probes the gluon splitting mechanism for heavy-flavour production and pushes tests of perturbative QCD to unprecedented theoretical precision. Utilising the soft drop jet-grooming technique to access the perturbative jet core further enhances constraints on first-principles theory. Measurements of the jet mass for jets containing fully reconstructed B± hadrons are reported with and without grooming. These results offer unparalleled tests of quark flavour and mass dependence in QCD and provide a baseline for future studies of heavy-flavour jet quenching in heavy-ion collisions.

Aaij, R., Abdelmotteleb, A., Beteta, C.a., Abudinén, F., Ackernley, T., Adefisoye, A.a., et al. (2025). First measurement of b-jet mass with and without grooming. PHYSICS LETTERS. SECTION B, 869, 1-13 [10.1016/j.physletb.2025.139854].

First measurement of b-jet mass with and without grooming

Carbone, A;Ferrari, F;Galli, D;Patrignani, C;Spedicato, E;Villa, A;Zenesini, F;
2025

Abstract

The LHCb collaboration presents a novel suite of heavy-flavour jet substructure measurements at forward rapidity in proton-proton collisions at a centre-of-mass energy of √s = 13 TeV. The jet mass is a perturbatively calculable probe of the virtuality of hard-scattered quarks and gluons, connecting small-distance quantum chromodynamics (QCD) with long-distance experimental measurement. It becomes dominated by nonperturbative corrections at small values, presenting an excellent test of QCD across a broad range of energies. Measuring heavy-flavour jet mass with a theoretically unambiguous flavour definition for the first time probes the gluon splitting mechanism for heavy-flavour production and pushes tests of perturbative QCD to unprecedented theoretical precision. Utilising the soft drop jet-grooming technique to access the perturbative jet core further enhances constraints on first-principles theory. Measurements of the jet mass for jets containing fully reconstructed B± hadrons are reported with and without grooming. These results offer unparalleled tests of quark flavour and mass dependence in QCD and provide a baseline for future studies of heavy-flavour jet quenching in heavy-ion collisions.
2025
Aaij, R., Abdelmotteleb, A., Beteta, C.a., Abudinén, F., Ackernley, T., Adefisoye, A.a., et al. (2025). First measurement of b-jet mass with and without grooming. PHYSICS LETTERS. SECTION B, 869, 1-13 [10.1016/j.physletb.2025.139854].
Aaij, R; Abdelmotteleb, Asw; Beteta, Ca; Abudinén, F; Ackernley, T; Adefisoye, Aa; Adeva, B; Adinolfi, M; Adlarson, P; Agapopoulou, C; Aidala, Ca; Aja...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1035658
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