4,364 research outputs found

    Asymptotics of the Coleman-Gurtin model

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    This paper is concerned with the integrodifferential equation \partial_t u-\Delta u -\int_0^\infty \kappa(s)\Delta u(t-s)\,\d s + \varphi(u)=f arising in the Coleman-Gurtin's theory of heat conduction with hereditary memory, in presence of a nonlinearity Ļ†\varphi of critical growth. Rephrasing the equation within the history space framework, we prove the existence of global and exponential attractors of optimal regularity and finite fractal dimension for the related solution semigroup, acting both on the basic weak-energy space and on a more regular phase space.Comment: Accepted in Discrete and Continuous Dynamical Systems, Serie

    Multiparticle correlation studies in pPb collisions at āˆšs_(NN) = 8.16 TeV

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    The second- and third-order azimuthal anisotropy Fourier harmonics of charged particles produced in pPb collisions, at āˆšs_(NN) = 8.16, are studied over a wide range of event multiplicities. Multiparticle correlations are used to isolate global properties stemming from the collision overlap geometry. The second-order ā€œellipticā€ harmonic moment is obtained with high precision through four-, six-, and eight-particle correlations and, for the first time, the third-order ā€œtriangularā€ harmonic moment is studied using four-particle correlations. A sample of peripheral PbPb collisions at āˆšs_(NN)= 5.02 TeV that covers a similar range of event multiplicities as the pPb results is also analyzed. Model calculations of initial-state fluctuations in pPb and PbPb collisions can be directly compared to the high-precision experimental results. This work provides new insight into the fluctuation-driven origin of the v3 coefficients in pPb and PbPb collisions, and into the dominating overall collision geometry in PbPb collisions at the earliest stages of heavy ion interactions

    Measurement of electroweak production of a W boson in association with two jets in protonā€“proton collisions at āˆšs = 13 TeV

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    A measurement is presented of electroweak (EW) production of a W boson in association with two jets in protonā€“proton collisions at āˆšs =13 TeV. The data sample was recorded by the CMS Collaboration at the LHC and corresponds to an integrated luminosity of 35.9fbā»Ā¹. The measurement is performed for the ā„“Ī½jj final state (with ā„“Ī½ indicating a leptonā€“neutrino pair, and j representing the quarks produced in the hard interaction) in a kinematic region defined by invariant mass m_(jj) > 120GeV and transverse momenta p_(Tj) > 25 GeV. The cross section of the process is measured in the electron and muon channels yielding Ļƒ_(EW)(W_(jj)) = 6.23Ā±0.12(stat)Ā±0.61(syst)pb per channel, in agreement with leading-order standard model predictions. The additional hadronic activity of events in a signal-enriched region is studied, and the measurements are compared with predictions. The final state is also used to perform a search for anomalous trilinear gauge couplings. Limits on anomalous trilinear gauge couplings associated with dimension-six operators are given in the framework of an effective field theory. The corresponding 95% confidence level intervals are āˆ’2.3 < c_(WWW)/Ī›Ā² < 2.5 TeVā»Ā², āˆ’8.8 < c_W/Ī›Ā² < 16 TeVā»Ā², and āˆ’45 < c_B/Ī›Ā² < 46 TeVā»Ā². These results are combined with the CMS EW Zjj analysis, yielding the constraint on the c_(WWW) coupling: āˆ’1.8 < c_(WWW)/Ī›Ā² < 2.0 TeVā»Ā²

    Search for light pseudoscalar boson pairs produced from decays of the 125 GeV Higgs boson in final states with two muons and two nearby tracks in pp collisions at āˆšs = 13 TeV

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    A search is presented for pairs of light pseudoscalar bosons, in the mass range from 4 to 15 GeV, produced from decays of the 125 GeV Higgs boson. The decay modes considered are final states that arise when one of the pseudoscalars decays to a pair of tau leptons, and the other one either into a pair of tau leptons or muons. The search is based on proton-proton collisions collected by the CMS experiment in 2016 at a center-of-mass energy of 13 TeV that correspond to an integrated luminosity of 35.9 fbā»Ā¹. The 2Ī¼2Ļ„ and 4Ļ„ channels are used in combination to constrain the product of the Higgs boson production cross section and the branching fraction into 4Ļ„ final state, ĻƒB, exploiting the linear dependence of the fermionic coupling strength of pseudoscalar bosons on the fermion mass. No significant excess is observed beyond the expectation from the standard model. The observed and expected upper limits at 95% confidence level on ĻƒB, relative to the standard model Higgs boson production cross section, are set respectively between 0.022 and 0.23 and between 0.027 and 0.19 in the mass range probed by the analysis

    Evidence for WW production from double-parton interactions in protonā€“proton collisions at āˆšs = 13 TeV

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    A search for WW production from double-parton scattering processes using same-charge electron-muon and dimuon events is reported, based on proton-proton collision data collected at a center-of-mass energy of 13 TeV. The analyzed data set corresponds to an integrated luminosity of 77.4fbā»Ā¹, collected using the CMS detector at the LHC in 2016 and 2017. Multivariate classifiers are used to discriminate between the signal and the dominant background processes. A maximum likelihood fit is performed to extract the signal cross section. This leads to the first evidence for WW production via double-parton scattering, with a significance of 3.9 standard deviations. The measured inclusive cross section is 1.41Ā±0.28(stat)Ā±0.28(syst)pb
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