Search for a new scalar resonance in flavour-changing neutral-current top-quark decays $t \rightarrow qX$ ($q=u,c$), with $X \rightarrow b\bar{b}$, in proton-proton collisions at $\sqrt{s}=13$ TeV with the ATLAS detector
ArXiv 2301.03902 (2023)
Search for leptonic charge asymmetry in $t\bar{t}W$ production in final states with three leptons at $\sqrt{s} = 13$ TeV
ArXiv 2301.04245 (2023)
Search for nonresonant pair production of Higgs bosons in the $b\bar{b}b\bar{b}$ final state in $pp$ collisions at $\sqrt{s}= 13$ TeV with the ATLAS detector
ArXiv 2301.03212 (2023)
Electron-Hadron Scattering resolving Parton Dynamics
Chapter in The Future of the Large Hadron Collider: A Super-Accelerator with Multiple Possible Lives, (2023) 321-335
Abstract:
The following sections are included: Resolving the Dynamics of Partons in Protons and Nuclei Diffractive scattering and three dimensional structure Small-x dynamics References
Flavoured jets with exact anti-kt kinematics and tests of infrared and collinear safety
ArXiv 2306.07314 (2023)
Abstract:
We propose extensions of the anti-kt and Cambridge/Aachen hierarchical jet clustering algorithms that are designed to retain the exact jet kinematics of these algorithms, while providing an infrared-and-collinear-safe definition of jet flavour at any fixed order in perturbation theory. Central to our approach is a new technique called Interleaved Flavour Neutralisation (IFN), whereby the treatment of flavour is integrated with, but distinct from, the kinematic clustering. IFN allows flavour information to be meaningfully accessed at each stage of the clustering sequence, which enables a consistent assignment of flavour both to individual jets and to their substructure. We validate the IFN approach using a dedicated framework for fixed-order tests of infrared and collinear safety, which also reveals unanticipated issues in earlier approaches to flavoured jet clustering. We briefly explore the phenomenological impact of IFN with anti-kt jets for benchmark tasks at the Large Hadron Collider.