Showing 181 - 200 results of 261 for search '"Pythia"', query time: 0.09s Refine Results
  1. 181

    Erratum to: A hybrid strong/weak coupling approach to jet quenching by Casalderrey-Solana, Jorge, Gulhan, Doga Can, Milhano, Jose Guilherme, Pablos, Daniel, Rajagopal, Krishna

    Published 2016
    “…We have also reduced the p[subscript T]-cut of our PYTHIA simulations from 70 GeV to 50 GeV to further reduce the sensitivity of our computations to this cut.…”
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  2. 182

    Event generator tuning using Bayesian optimization by Ilten, P., Williams, M., Yang, Y., Ilten, Philip J, Williams, Michael, Yang, Yang

    Published 2019
    “…In this article, we show that Monte Carlo event generator parameters can be accurately obtained using Bayesian optimization and minimal expert-level physics knowledge. A tune of the PYTHIA 8 event generator using e⁺e⁻ events, where 20 parameters are optimized, can be run on a modern laptop in just two days. …”
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  3. 183

    Measurements of two-particle correlations in e+e− collisions at 91 GeV with ALEPH archived data by Lee, Yen-Jie, Badea, Anthony, Baty, Austin, McGinn, Christopher, Innocenti, Gian Michele, Thaler, Jesse, Peters, Michael, Sheng, Tzu-An, Chang, Paoti, Maggi, Marcello

    Published 2021
    “…The associated yield distributions in both analyses are in better agreement with the prediction from the pythia v6.1 event generator than from herwig v7.1.5. …”
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  4. 184

    Observation of a Λ b 0... by Aaij, R., Abdelmotteleb, A. S. W., Abellán Beteta, C., Ackernley, T., Adeva, B., Adinolfi, M., Afsharnia, H., Aidala, C. A., Aiola, S., Ajaltouni, Z., Akar, S., Albrecht, J., Alessio, F., Alexander, M., Alfonso Albero, A.

    Published 2021
    “…Comparisons to predictions from hadronisation models in Pythia and heavy-quark recombination are provided. …”
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  5. 185

    Calibration of the top quark mass for Monte-Carlo event generators by Butenschoen, Mathias, Dehnadi, Bahman, Hoang, André H., Mateu, Vicent, Preisser, Moritz, Stewart, Iain W

    Published 2021
    “…Fitting e+e- 2-Jettiness calculations at NLL/NNLL order to PYTHIA 8.205, we find that mtMC agrees with the MSR mass at the scale 1 GeV within uncertainties, mtMC ≃ mtMSR1GeV, but differs from the pole mass by 900/600 MeV.…”
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  6. 186

    Theory, phenomenology, and experimental avenues for dark showers: a Snowmass 2021 report by Albouy, Guillaume, Barron, Jared, Beauchesne, Hugues, Bernreuther, Elias, Bona, Marcella, Cazzaniga, Cesare, Cesarotti, Cari, Cohen, Timothy, de Cosa, Annapaola, Curtin, David, Demiragli, Zeynep, Doglioni, Caterina, Elliot, Alison, DiPetrillo, Karri F., Eble, Florian, Erice, Carlos, Freer, Chad, Garcia-Bellido, Aran, Gemmell, Caleb, Genest, Marie-Hélène

    Published 2022
    “…After a review of the theory, existing benchmarks and constraints, this work addresses how to build consistent benchmarks from the underlying physical parameters and present new developments for the pythia Hidden Valley module, along with jet substructure studies. …”
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  7. 187
  8. 188
  9. 189

    Light-quark and gluon jet discrimination in pp collisions at √s = 7 TeV with the ATLAS detector by Taylor, Frank E., ATLAS Collaboration

    Published 2014
    “…The rejection of gluon-jets found in the data is significantly below what is attainable using a Pythia 6 Monte Carlo simulation, where gluon-jet mis-tag rates of 10 % can be reached for a 50 % selection efficiency of light-quark jets using the same jet properties.…”
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  10. 190

    Measurement of the ϒ(1S) production cross-section in pp collisions at √s = 7 TeV in ATLAS by Taylor, Frank E.

    Published 2015
    “…The cross-section measurement is compared to theoretical predictions: it agrees to within a factor of two with a prediction based on the NRQCD model including colour-singlet and colour-octet matrix elements as implemented in Pythia while it disagrees by up to a factor of ten with the next-to-leading order prediction based on the colour-singlet model.…”
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  11. 191

    A study of the b-quark fragmentation function with the DELPHI detector at LEP I and an averaged distribution obtained at the Z Pole by Abdallah, J, Abreu, P, Adam, W, Adzic, P, Albrecht, T, Alemany-Fernandez, R, Allmendinger, T, Allport, P, Amaldi, U, Amapane, N, Amato, S, Anashkin, E, Andreazza, A, Andringa, S, Anjos, N, Antilogus, P, Apel, W, Arnoud, Y, Ask, S, Asman, B, Augustin, J, Augustinus, A, Baillon, P, Ballestrero, A, Bambade, P

    Published 2011
    “…In the parton shower framework, data favour the Lund model ansatz and corresponding values of its parameters have been determined within PYTHIA 6.156 from DELPHI data: a=1.84+0.23-0.21 and b=0.642+0.073-0.063 GeV-2, with a correlation factor ρ=92.2%. …”
    Journal article
  12. 192

    Underlying event in hard interactions at the Fermilab Tevatron p̄p collider by Acosta, D, Affolder, T, Albrow, MG, Ambrose, D, Amidei, D, Anikeev, K, Antos, J, Apollinari, G, Arisawa, T, Artikov, A, Ashmanskas, W, Azfar, F, Azzi-Bacchetta, P, Bacchetta, N, Bachacou, H, Badgett, W, Barbaro-Galtieri, A, Barnes, V, Barnett, B, Baroiant, S, Barone, M, Bauer, G, Bedeschi, F, Behari, S, Belforte, S

    Published 2004
    “…The distribution of the sum of the track momenta in the two cones is also examined for five different ET(1) bins. The HERWIG and PYTHIA Monte Carlo generators are reasonably successful in describing the data, but neither can describe completely all of the event properties.…”
    Journal article
  13. 193

    Perceptions of gender and the divine in Greek texts of the second and third centuries A.D by Sherwood, J, Sherwood, Jane

    Published 1996
    “…It is the marriage-like nature of their relationship with their gods that makes both human and divine females perfect mediators between worshippers and their male god, the Pythia with Apollo, and Isis with Osiris. Chapter five finds a middle way between opposing views that Heliodoros' <em>An Ethiopian Story</em> is either a religious mystery text or entertainment without religious meaning. …”
    Thesis
  14. 194

    Systematic Analysis of the Non-Extensive Statistical Approach in High Energy Particle Collisions—Experiment vs. Theory † by Gábor Bíró, Gergely Gábor Barnaföldi, Tamás Sándor Biró, Károly Ürmössy, Ádám Takács

    Published 2017-02-01
    “…We also study and compare in details the theory-obtained parameters for the case of PYTHIA8 Monte Carlo Generator, perturbative QCD and quark coalescence models.…”
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  15. 195
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  17. 197

    Monte Carlo Top Quark Mass Calibration by Preisser, Moritz, Dehnadi, Bahman, Hoang, Andre, Mateu, Vicent, Stewart, Iain

    Published 2020
    “…Fitting e+e- 2-Jettiness calculations at NLL/NNLL order to Pythia 8.205, we find that mtMC agrees with the MSR mass (Formula Presented.) within uncertainties. …”
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  18. 198

    Measurement of particle production and inclusive differential cross sections in p(p)over-bar collisions at root s=1.96 TeV by Choudalakis, Georgios, Gomez-Ceballos, Guillelmo, Goncharov, Maxim, Hahn, Kristian Allan, Henderson, C., Knuteson, Bruce O., Paus, Christoph M. E., Xie, Si, Bauer, Gerry P, Makhoul, Khaldoun

    Published 2010
    “…A first measurement of the event transverse energy sum differential cross section is also reported. A comparison with a pythia prediction at the hadron level is performed. …”
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  19. 199

    Underlying event characteristics and their dependence on jet size of charged-particle jet events in pp collisions at √(s)=7  TeV with the ATLAS detector by Taylor, Frank E.

    Published 2013
    “…Predictions from several Monte Carlo tunes have been compared to the data; the predictions from Pythia 6, based on tunes that have been determined using LHC data, show reasonable agreement with the data, including the dependence on R. …”
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  20. 200

    Dissecting Soft Radiation with Factorization by Tackmann, Frank J., Waalewijn, Wouter J., Stewart, Iain

    Published 2015
    “…The hadronization model in Pythia8 agrees well with these properties. The perturbative soft initial state radiation (ISR) has a contribution that depends on the jet area in the same way as the underlying event, but this degeneracy is broken by dependence on the jet p[subscript T]. …”
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