Prospects for measuring quark polarization and spin correlations in and samples at the LHC
arXiv:2311.08226 · doi:10.1007/JHEP03(2024)063
Abstract
Polarization and spin correlations have been studied in detail for top quarks at the LHC, but have been explored very little for the other flavors of quarks. In this paper we consider the processes with , or . Utilizing the partial preservation of the quark's spin information in baryons in the jet produced by the quark, we examine possible analysis strategies for ATLAS and CMS to measure the quark polarization and spin correlations. We find polarization measurements for the and quarks to be feasible, even with the currently available datasets. Spin correlation measurements for are possible using the CMS Run 2 parked data, while such measurements for will become possible with higher integrated luminosity. For the quark, we find the measurements to be challenging with the standard triggers. We also provide leading-order QCD predictions for the polarization and spin correlations expected in the and samples with the cuts envisioned for the above analyses. Apart from establishing experimentally the existence of spin correlations in and systems produced in collisions, the proposed measurements can provide new information on the polarization transfer from quarks to baryons and might even be sensitive to physics beyond the Standard Model.
51 pages, 5 figures; v2: minor improvements of presentation; published version
References in corpus (9)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- An Introduction to PYTHIA 8.2
- Automatic spin-entangled decays of heavy resonances in Monte Carlo simulations
- Parton Fragmentation Functions
- Spin Correlation Effects in Top Quark Pair Production at the LHC
- Quantum entanglement and top spin correlations in SMEFT at higher orders
- Reconstruction of semileptonically decaying beauty hadrons produced in high energy pp collisions
- Neutrino reconstruction with topological information
- Kinked tracks from baryons as a probe of light quark polarizations
Cited by in corpus (4)
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- Colliders are not Testing Locality via Bell's Inequality nor Providing an Unconditional Proof of Entanglement