Precision physics with the Proton Spectrometer and diffractive physics measurements from CMSWe describe recent results from CMS and TOTEM on hard diffraction, diffractive jets and jet gap jet events. We also give the first sensitivities and limits on quartic anomalous couplings and…C. Royon·Sep 22, 2022SaveLearn
Multiple Coulomb Scattering of muons in Lithium HydrideMultiple Coulomb Scattering (MCS) is a well known phenomenon occurring when charged particles traverse materials. Measurements of muons traversing low Z materials made in the MuScat experiment…M. Bogomilov, R. Tsenov, G. Vankova-Kirilova et al.·Sep 21, 2022SaveLearn
Quarkonia production in (ultra-)peripheral PbPb collisions at LHCbThe cross-sections of coherent and production in ultra-peripheral PbPb collisions at a nucleon-nucleon center-of-mass energy of 5.02\,TeV are measured using a data sample…Xiaolin Wang·Sep 20, 2022SaveLearn
Search for the lepton-flavour violating decays B0 K*0 τ μ^A first search for the lepton-flavour violating decays B0 K*0 τ μ is presented. The analysis is performed using a sample of proton-proton collision data, collected with the…LHCb collaboration·Sep 20, 2022SaveLearn
Amplitude analysis of the Ds+ π- π+ π+ decayA Dalitz plot analysis of the Ds+ π- π+ π+ decay is presented. The analysis is based on proton-proton collision data recorded by the LHCb experiment at a centre-of-mass energy of 8…LHCb collaboration·Sep 20, 2022SaveLearn
Measurement of decay-time dependent CP violation in B0 → K0S K0S K0S using 2019--2021 Belle II dataWe report a measurement of decay-time dependent CP-violating parameters in B0 → K0S K0S K0S decays. We use (198.0 3.0) × 106\ BB pairs collected at the…Belle II Collaboration, F. Abudinén, I. Adachi et al.·Sep 20, 2022SaveLearn
Search for Majoron-like particles with CUPID-0We present the first search for the Majoron-emitting modes of the neutrinoless double β decay (0ββ0) using scintillating cryogenic calorimeters. We analysed the CUPID-0 Phase…0 Collaboration, O. Azzolini, J. W. Beeman et al.·Sep 20, 2022SaveLearn
Challenges for dark matter direct search with SiPMsLiquid xenon and liquid argon detectors are leading the direct dark matter search and are expected to be the candidate technology for the forthcoming generation of ultra-sensitive large-mass…Alessandro Razeto, Nicola Rossi·Sep 19, 2022SaveLearn
Measurement of single top-quark production in the s-channel in proton-proton collisions at s=13 TeV with the ATLAS detectorA measurement of single top-quark production in the s-channel is performed in proton-proton collisions at a centre-of-mass energy of 13 TeV with the ATLAS detector at the CERN Large Hadron…ATLAS Collaboration·Sep 19, 2022SaveLearn
Probing the valence quark region of nucleons with Z bosons at LHCbIn this high-x region, both the flavour content and structure of the nucleon parton distribution functions remains relatively poorly known. New LHCb measurements of Z and charm jet associated…Hengne Li, LHCb collaboration·Sep 19, 2022SaveLearn
Study of multiplicity dependence of heavy flavor production in p-p collisions using rope hadronization mechanismThe multiplicity dependence of the production of the charm mesons in p-p collisions at s = 7 TeV and 13 TeV as measured by ALICE experiment has been investigated using Pythia 8 event…Tulika Tripathy, Bharati Naik, Ranjit Nayak et al.·Sep 19, 2022SaveLearn
Neutron Tagging following Atmospheric Neutrino Events in a Water Cherenkov DetectorWe present the development of neutron-tagging techniques in Super-Kamiokande IV using a neural network analysis. The detection efficiency of neutron capture on hydrogen is estimated to be 26%, with a…K. Abe, Y. Haga, Y. Hayato et al.·Sep 18, 2022SaveLearn
Evidence for the singly Cabibbo-suppressed decay 0c-π+ and search for 0c-K+ and -K+ decays at BelleUsing a data sample of 980 fb-1 collected with the Belle detector at the KEKB asymmetric-energy e+e- collider, we study for the first time the singly Cabibbo-suppressed decays…Belle Collaboration, X. Han, S. Jia et al.·Sep 18, 2022SaveLearn
Partial wave analysis of the charmed baryon hadronic decay c+π+π0Based on e+e- collision samples corresponding to an integrated luminosity of 4.4 fb-1 collected with the BESIII detector at center-of-mass energies between 4.6\,\,GeV and…BESIII Collaboration, M. Ablikim, M. N. Achasov et al.·Sep 18, 2022SaveLearn
Report of the Topical Group on Cosmic Frontier 5 Dark Energy and Cosmic Acceleration: Cosmic Dawn and Before for Snowmass 2021This report summarizes the envisioned research activities as gathered from the Snowmass 2021 CF5 working group concerning Dark Energy and Cosmic Acceleration: Cosmic Dawn and Before. The scientific…Clarence L. Chang, Laura Newburgh, Deirdre Shoemaker et al.·Sep 17, 2022SaveLearn
Fundamental Physics in Small ExperimentsHigh energy physics aims to understand the fundamental laws of particles and their interactions at both the largest and smallest scales of the universe. This typically means probing very high…T. Blum, P. Winter, T. Bhattacharya et al.·Sep 16, 2022SaveLearn
Measurements of observables sensitive to colour reconnection in tt events with the ATLAS detector at s=13 TeVA measurement of observables sensitive to effects of colour reconnection in top-quark pair-production events is presented using 139 fb-1 of 13\,TeV proton-proton collision data collected by…ATLAS Collaboration·Sep 16, 2022SaveLearn
Simultaneous measurement of muon neutrino μ charged-current single π+ production in CH, C, H2O, Fe, and Pb targets in MINERvANeutrino-induced charged-current single π+ production in the (1232) resonance region is of considerable interest to accelerator-based neutrino oscillation experiments. In this work, high…A. Bercellie, K. A. Kroma-Wiley, S. Akhter et al.·Sep 16, 2022SaveLearn
Snowmass Topical Report: Underground Facilities for NeutrinosThis topical report of the 2021 US Community Study on the Future of Particle Physics (Snowmass 2021) summarizes the underground facilities needs for upcoming and next generation neutrino experiments.…Tim Bolton, M. Patrick Decowski, Albert De Roeck et al.·Sep 15, 2022SaveLearn
Supporting Capabilities For Underground FacilitiesThe 2021 particle physics community study, known as "Snowmass 2021", has brought together particle physicists around the world to create a unified vision for the field over the next decade. One of…Alvine Kamaha, Brianna Mount, Richard Schnee·Sep 15, 2022SaveLearn
Report of the Topical Group on Neutrino Applications for Snowmass 2021This report has been prepared as part of the US Community Study on the Future of Particle Physics (Snowmass 2021) by the Snowmass Neutrino Frontier Topical Group NF07 Conveners, based on input from…N. S. Bowden, J. M. Link, W. Wang·Sep 15, 2022SaveLearn
Report of the Topical Group on Artificial Neutrino Sources for Snowmass 2021The NF09 topical group was charged with soliciting input to Snowmass on the topic of artificial neutrino sources. In this report, we attempt to catalogue all new or upgraded artificial neutrino…L. Fields, A. D. Marino, J. P. Ochoa-Ricoux et al.·Sep 15, 2022SaveLearn
Snowmass Computational Frontier: Topical Group Report on Experimental Algorithm ParallelizationThe substantial increase in data volume and complexity expected from future experiments will require significant investment to prepare experimental algorithms. These algorithms include physics object…G. Cerati, K. Heitmann, W. Hopkins et al.·Sep 15, 2022SaveLearn
Search for pair production of vector-like quarks in leptonic final states in proton-proton collisions at s = 13 TeVA search is presented for vector-like T and B quark-antiquark pairs produced in proton-proton collisions at a center-of-mass energy of 13 TeV. Data were collected by the CMS experiment at the CERN…CMS Collaboration·Sep 15, 2022SaveLearn
A First Application of Collaborative Learning In Particle PhysicsOver the last ten years, the popularity of Machine Learning (ML) has grown exponentially in all scientific fields, including particle physics. The industry has also developed new powerful tools that,…Stefano Vergani, Attila Bagoly·Sep 15, 2022SaveLearn