Non-global logarithms, factorization, and the soft substructure of jets
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  • 作者:Andrew J. Larkoski ; Ian Moult ; Duff Neill
  • 关键词:Resummation ; QCD
  • 刊名:Journal of High Energy Physics
  • 出版年:2015
  • 出版时间:September 2015
  • 年:2015
  • 卷:2015
  • 期:9
  • 全文大小:1,688 KB
  • 参考文献:[1]V. Antonelli, M. Dasgupta and G.P. Salam, Resummation of thrust distributions in DIS, JHEP 02 (2000) 001 [hep-ph/鈥?912488 ] [INSPIRE ].
    [2]M. Dasgupta and G.P. Salam, Resummation of the jet broadening in DIS, Eur. Phys. J. C 24 (2002) 213 [hep-ph/鈥?110213 ] [INSPIRE ].
    [3]M. Dasgupta and G.P. Salam, Resummed event shape variables in DIS, JHEP 08 (2002) 032 [hep-ph/鈥?208073 ] [INSPIRE ].
    [4]A.V. Manohar, Deep inelastic scattering as x 鈫?1 using soft collinear effective theory, Phys. Rev. D 68 (2003) 114019 [hep-ph/鈥?309176 ] [INSPIRE ].
    [5]T. Becher, M. Neubert and B.D. Pecjak, Factorization and momentum-space resummation in deep-inelastic scattering, JHEP 01 (2007) 076 [hep-ph/鈥?607228 ] [INSPIRE ].
    [6]D. Kang, C. Lee and I.W. Stewart, Using 1-jettiness to measure 2 jets in DIS 3 ways, Phys. Rev. D 88 (2013) 054004 [arXiv:鈥?303.鈥?952 ] [INSPIRE ].ADS
    [7]S. Catani, L. Trentadue, G. Turnock and B.R. Webber, Resummation of large logarithms in e + e 鈭?/sup> event shape distributions, Nucl. Phys. B 407 (1993) 3 [INSPIRE ].CrossRef ADS
    [8]Y.L. Dokshitzer, A. Lucenti, G. Marchesini and G.P. Salam, On the QCD analysis of jet broadening, JHEP 01 (1998) 011 [hep-ph/鈥?801324 ] [INSPIRE ].
    [9]S. Catani and B.R. Webber, Resummed C parameter distribution in e + e 鈭?/sup> annihilation, Phys. Lett. B 427 (1998) 377 [hep-ph/鈥?801350 ] [INSPIRE ].
    [10]T. Becher and M.D. Schwartz, A precise determination of 伪 s from LEP thrust data using effective field theory, JHEP 07 (2008) 034 [arXiv:鈥?803.鈥?342 ] [INSPIRE ].CrossRef ADS
    [11]R. Abbate, M. Fickinger, A.H. Hoang, V. Mateu and I.W. Stewart, Thrust at N 3 LL with power corrections and a precision global fit for 伪 s (m Z ), Phys. Rev. D 83 (2011) 074021 [arXiv:鈥?006.鈥?080 ] [INSPIRE ].ADS
    [12]A. Banfi, H. McAslan, P.F. Monni and G. Zanderighi, A general method for the resummation of event-shape distributions in e + e 鈭?/sup> annihilation, JHEP 05 (2015) 102 [arXiv:鈥?412.鈥?126 ] [INSPIRE ].CrossRef ADS
    [13]J.C. Collins, D.E. Soper and G.F. Sterman, Factorization for short distance hadron-hadron scattering, Nucl. Phys. B 261 (1985) 104 [INSPIRE ].CrossRef ADS
    [14]G.F. Sterman, Summation of large corrections to short distance hadronic cross-sections, Nucl. Phys. B 281 (1987) 310 [INSPIRE ].CrossRef ADS
    [15]S. Catani, D. de Florian, M. Grazzini and P. Nason, Soft gluon resummation for Higgs boson production at hadron colliders, JHEP 07 (2003) 028 [hep-ph/鈥?306211 ] [INSPIRE ].
    [16]A. Banfi, G.P. Salam and G. Zanderighi, Resummed event shapes at hadron-hadron colliders, JHEP 08 (2004) 062 [hep-ph/鈥?407287 ] [INSPIRE ].
    [17]V. Ahrens, T. Becher, M. Neubert and L.L. Yang, Renormalization-group improved prediction for Higgs production at hadron colliders, Eur. Phys. J. C 62 (2009) 333 [arXiv:鈥?809.鈥?283 ] [INSPIRE ].CrossRef ADS
    [18]I.W. Stewart, F.J. Tackmann and W.J. Waalewijn, Factorization at the LHC: from PDFs to initial state jets, Phys. Rev. D 81 (2010) 094035 [arXiv:鈥?910.鈥?467 ] [INSPIRE ].ADS
    [19]C.F. Berger, C. Marcantonini, I.W. Stewart, F.J. Tackmann and W.J. Waalewijn, Higgs production with a central jet veto at NNLL+NNLO, JHEP 04 (2011) 092 [arXiv:鈥?012.鈥?480 ] [INSPIRE ].CrossRef ADS
    [20]A. Banfi, G.P. Salam and G. Zanderighi, Phenomenology of event shapes at hadron colliders, JHEP 06 (2010) 038 [arXiv:鈥?001.鈥?082 ] [INSPIRE ].CrossRef ADS
    [21]M. Misiak, The b 鈫?se + e 鈭?/sup> and b 鈫?s纬 decays with next-to-leading logarithmic QCD corrections, Nucl. Phys. B 393 (1993) 23 [Erratum ibid. B 439 (1995) 461] [INSPIRE ].
    [22]G. Buchalla, A.J. Buras and M.E. Lautenbacher, Weak decays beyond leading logarithms, Rev. Mod. Phys. 68 (1996) 1125 [hep-ph/鈥?512380 ] [INSPIRE ].
    [23]K.G. Chetyrkin, M. Misiak and M. M眉nz, Weak radiative B meson decay beyond leading logarithms, Phys. Lett. B 400 (1997) 206 [Erratum ibid. B 425 (1998) 414] [hep-ph/鈥?612313 ] [INSPIRE ].
    [24]A.J. Buras, Weak hamiltonian, CP-violation and rare decays, hep-ph/鈥?806471 [INSPIRE ].
    [25]M. Misiak et al., Estimate of \( B\left(\overline{B}\to X(s)\gamma \right) \) at O(伪 s 2 ), Phys. Rev. Lett. 98 (2007) 022002 [hep-ph/鈥?609232 ] [INSPIRE ].
    [26]E. Farhi, A QCD test for jets, Phys. Rev. Lett. 39 (1977) 1587 [INSPIRE ].CrossRef ADS
    [27]C.F. Berger, T. Kucs and G.F. Sterman, Event shape/energy flow correlations, Phys. Rev. D 68 (2003) 014012 [hep-ph/鈥?303051 ] [INSPIRE ].
    [28]J.C. Collins, D.E. Soper and G.F. Sterman, Transverse momentum distribution in Drell-Yan pair and W and Z boson production, Nucl. Phys. B 250 (1985) 199 [INSPIRE ].CrossRef ADS
    [29]G. Marchesini and B.R. Webber, Associated transverse energy in hadronic jet production, Phys. Rev. D 38 (1988) 3419 [INSPIRE ].ADS
    [30]C.F. Berger, T. Kucs and G.F. Sterman, Energy flow in interjet radiation, Phys. Rev. D 65 (2002) 094031 [hep-ph/鈥?110004 ] [INSPIRE ].
    [31]G. Oderda and G.F. Sterman, Energy and color flow in dijet rapidity gaps, Phys. Rev. Lett. 81 (1998) 3591 [hep-ph/鈥?806530 ] [INSPIRE ].
    [32]G. Oderda, Dijet rapidity gaps in photoproduction from perturbative QCD, Phys. Rev. D 61 (2000) 014004 [hep-ph/鈥?903240 ] [INSPIRE ].
    [33]M. Dasgupta and G.P. Salam, Resummation of nonglobal QCD observables, Phys. Lett. B 512 (2001) 323 [hep-ph/鈥?104277 ] [INSPIRE ].
    [34]A. Abdesselam et al., Boosted objects: a probe of beyond the standard model physics, Eur. Phys. J. C 71 (2011) 1661 [arXiv:鈥?012.鈥?412 ] [INSPIRE ].CrossRef ADS
    [35]A. Altheimer et al., Jet substructure at the Tevatron and LHC: new results, new tools, new benchmarks, J. Phys. G 39 (2012) 063001 [arXiv:鈥?201.鈥?008 ] [INSPIRE ].CrossRef ADS
    [36]A. Altheimer et al., Boosted objects and jet substructure at the LHC. Report of BOOST2012, held at IFIC Valencia, 23rd-27th of July 2012, Eur. Phys. J. C 74 (2014) 2792 [arXiv:鈥?311.鈥?708 ] [INSPIRE ].
    [37]CMS collaboration, Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC, Phys. Lett. B 716 (2012) 30 [arXiv:鈥?207.鈥?235 ] [INSPIRE ].
    [38]ATLAS collaboration, Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC, Phys. Lett. B 716 (2012) 1 [arXiv:鈥?207.鈥?214 ] [INSPIRE ].
    [39]M. Dasgupta and G.P. Salam, Accounting for coherence in interjet E(t) flow: a case study, JHEP 03 (2002) 017 [hep-ph/鈥?203009 ] [INSPIRE ].
    [40]A. Banfi, G. Marchesini and G. Smye, Away from jet energy flow, JHEP 08 (2002) 006 [hep-ph/鈥?206076 ] [INSPIRE ].
    [41]R.B. Appleby and M.H. Seymour, Nonglobal logarithms in interjet energy flow with kt clustering requirement, JHEP 12 (2002) 063 [hep-ph/鈥?211426 ] [INSPIRE ].
    [42]H. Weigert, Nonglobal jet evolution at finite N (c), Nucl. Phys. B 685 (2004) 321 [hep-ph/鈥?312050 ] [INSPIRE ].
    [43]M. Rubin, Non-global logarithms in filtered jet algorithms, JHEP 05 (2010) 005 [arXiv:鈥?002.鈥?557 ] [INSPIRE ].CrossRef ADS
    [44]A. Banfi, M. Dasgupta, K. Khelifa-Kerfa and S. Marzani, Non-global logarithms and jet algorithms in high-pT jet shapes, JHEP 08 (2010) 064 [arXiv:鈥?004.鈥?483 ] [INSPIRE ].CrossRef ADS
    [45]R. Kelley, M.D. Schwartz and H.X. Zhu, Resummation of jet mass with and without a jet veto, arXiv:鈥?102.鈥?561 [INSPIRE ].
    [46]A. Hornig, C. Lee, I.W. Stewart, J.R. Walsh and S. Zuberi, Non-global structure of the O(伪 s 2 ) dijet soft function, JHEP 08 (2011) 054 [arXiv:鈥?105.鈥?628 ] [INSPIRE ].CrossRef ADS
    [47]A. Hornig, C. Lee, J.R. Walsh and S. Zuberi, Double non-global logarithms in-N-out of jets, JHEP 01 (2012) 149 [arXiv:鈥?110.鈥?004 ] [INSPIRE ].CrossRef ADS
    [48]R. Kelley, M.D. Schwartz, R.M. Schabinger and H.X. Zhu, Jet mass with a jet veto at two loops and the universality of non-global structure, Phys. Rev. D 86 (2012) 054017 [arXiv:鈥?112.鈥?343 ] [INSPIRE ].ADS
    [49]R. Kelley, J.R. Walsh and S. Zuberi, Abelian non-global logarithms from soft gluon clustering, JHEP 09 (2012) 117 [arXiv:鈥?202.鈥?361 ] [INSPIRE ].CrossRef ADS
    [50]Y. Hatta and T. Ueda, Resummation of non-global logarithms at finite N c , Nucl. Phys. B 874 (2013) 808 [arXiv:鈥?304.鈥?930 ] [INSPIRE ].MathSciNet CrossRef ADS
    [51]M.D. Schwartz and H.X. Zhu, Nonglobal logarithms at three loops, four loops, five loops and beyond, Phys. Rev. D 90 (2014) 065004 [arXiv:鈥?403.鈥?949 ] [INSPIRE ].ADS
    [52]K. Khelifa-Kerfa and Y. Delenda, Non-global logarithms at finite N c beyond leading order, JHEP 03 (2015) 094 [arXiv:鈥?501.鈥?0475 ] [INSPIRE ].CrossRef
    [53]S. Caron-Huot, Resummation of non-global logarithms and the BFKL equation, arXiv:鈥?501.鈥?3754 [INSPIRE ].
    [54]E.A. Kuraev, L.N. Lipatov and V.S. Fadin, Multi-reggeon processes in the Yang-Mills theory, Sov. Phys. JETP 44 (1976) 443 [INSPIRE ].ADS
    [55]L.N. Lipatov, Reggeization of the vector meson and the vacuum singularity in nonabelian gauge theories, Sov. J. Nucl. Phys. 23 (1976) 338 [INSPIRE ].
    [56]L.N. Lipatov, The bare Pomeron in quantum chromodynamics, Sov. Phys. JETP 63 (1986) 904 [INSPIRE ].
    [57]E.A. Kuraev, L.N. Lipatov and V.S. Fadin, The Pomeranchuk singularity in nonabelian gauge theories, Sov. Phys. JETP 45 (1977) 199 [INSPIRE ].MathSciNet ADS
    [58]I.I. Balitsky and L.N. Lipatov, The Pomeranchuk singularity in quantum chromodynamics, Sov. J. Nucl. Phys. 28 (1978) 822 [INSPIRE ].
    [59]J. Jalilian-Marian, A. Kovner, L.D. McLerran and H. Weigert, The intrinsic glue distribution at very small x, Phys. Rev. D 55 (1997) 5414 [hep-ph/鈥?606337 ] [INSPIRE ].
    [60]J. Jalilian-Marian, A. Kovner, A. Leonidov and H. Weigert, The Wilson renormalization group for low x physics: Towards the high density regime, Phys. Rev. D 59 (1998) 014014 [hep-ph/鈥?706377 ] [INSPIRE ].
    [61]E. Iancu, A. Leonidov and L.D. McLerran, The renormalization group equation for the color glass condensate, Phys. Lett. B 510 (2001) 133 [hep-ph/鈥?102009 ] [INSPIRE ].
    [62]M. Dasgupta, A. Fregoso, S. Marzani and A. Powling, Jet substructure with analytical methods, Eur. Phys. J. C 73 (2013) 2623 [arXiv:鈥?307.鈥?013 ] [INSPIRE ].CrossRef ADS
    [63]M. Dasgupta, A. Fregoso, S. Marzani and G.P. Salam, Towards an understanding of jet substructure, JHEP 09 (2013) 029 [arXiv:鈥?307.鈥?007 ] [INSPIRE ].CrossRef ADS
    [64]A.J. Larkoski, S. Marzani, G. Soyez and J. Thaler, Soft drop, JHEP 05 (2014) 146 [arXiv:鈥?402.鈥?657 ] [INSPIRE ].CrossRef ADS
    [65]J.M. Butterworth, A.R. Davison, M. Rubin and G.P. Salam, Jet substructure as a new Higgs search channel at the LHC, Phys. Rev. Lett. 100 (2008) 242001 [arXiv:鈥?802.鈥?470 ] [INSPIRE ].CrossRef ADS
    [66]S.D. Ellis, C.K. Vermilion and J.R. Walsh, Techniques for improved heavy particle searches with jet substructure, Phys. Rev. D 80 (2009) 051501 [arXiv:鈥?903.鈥?081 ] [INSPIRE ].ADS
    [67]S.D. Ellis, C.K. Vermilion and J.R. Walsh, Recombination algorithms and jet substructure: pruning as a tool for heavy particle searches, Phys. Rev. D 81 (2010) 094023 [arXiv:鈥?912.鈥?033 ] [INSPIRE ].ADS
    [68]D. Krohn, J. Thaler and L.-T. Wang, Jet Trimming, JHEP 02 (2010) 084 [arXiv:鈥?912.鈥?342 ] [INSPIRE ].CrossRef ADS
    [69]G. Marchesini and E. Onofri, Exact solution of BFKL equation in jet-physics, JHEP 07 (2004) 031 [hep-ph/鈥?404242 ] [INSPIRE ].
    [70]G. Marchesini and A.H. Mueller, BFKL dynamics in jet evolution, Phys. Lett. B 575 (2003) 37 [hep-ph/鈥?308284 ] [INSPIRE ].
    [71]J. Thaler and K. Van Tilburg, Identifying boosted objects with N-subjettiness, JHEP 03 (2011) 015 [arXiv:鈥?011.鈥?268 ] [INSPIRE ].CrossRef ADS
    [72]J. Thaler and K. Van Tilburg, Maximizing boosted top identification by minimizing N-subjettiness, JHEP 02 (2012) 093 [arXiv:鈥?108.鈥?701 ] [INSPIRE ].CrossRef ADS
    [73]A.J. Larkoski, D. Neill and J. Thaler, Jet shapes with the broadening axis, JHEP 04 (2014) 017 [arXiv:鈥?401.鈥?158 ] [INSPIRE ].CrossRef ADS
    [74]M. Cacciari, G.P. Salam and G. Soyez, The anti-k(t) jet clustering algorithm, JHEP 04 (2008) 063 [arXiv:鈥?802.鈥?189 ] [INSPIRE ].CrossRef ADS
    [75]D. Bertolini, T. Chan and J. Thaler, Jet observables without jet algorithms, JHEP 04 (2014) 013 [arXiv:鈥?310.鈥?584 ] [INSPIRE ].CrossRef ADS
    [76]G. Salam, unpublished.
    [77]A.J. Larkoski, G.P. Salam and J. Thaler, Energy correlation functions for jet substructure, JHEP 06 (2013) 108 [arXiv:鈥?305.鈥?007 ] [INSPIRE ].MathSciNet CrossRef ADS
    [78]A.J. Larkoski, I. Moult and D. Neill, Power counting to better jet observables, JHEP 12 (2014) 009 [arXiv:鈥?409.鈥?298 ] [INSPIRE ].CrossRef ADS
    [79]A.J. Larkoski, I. Moult and D. Neill, Resumming phenomenological jet observables, to appear.
    [80]E. Gardi and J. Rathsman, Renormalon resummation and exponentiation of soft and collinear gluon radiation in the thrust distribution, Nucl. Phys. B 609 (2001) 123 [hep-ph/鈥?103217 ] [INSPIRE ].
    [81]J.R. Forshaw, A. Kyrieleis and M.H. Seymour, Super-leading logarithms in non-global observables in QCD, JHEP 08 (2006) 059 [hep-ph/鈥?604094 ] [INSPIRE ].
    [82]J.R. Forshaw, A. Kyrieleis and M.H. Seymour, Super-leading logarithms in non-global observables in QCD: colour basis independent calculation, JHEP 09 (2008) 128 [arXiv:鈥?808.鈥?269 ] [INSPIRE ].CrossRef ADS
    [83]J. Forshaw, J. Keates and S. Marzani, Jet vetoing at the LHC, JHEP 07 (2009) 023 [arXiv:鈥?905.鈥?350 ] [INSPIRE ].CrossRef ADS
    [84]R.M. Duran Delgado, J.R. Forshaw, S. Marzani and M.H. Seymour, The dijet cross section with a jet veto, JHEP 08 (2011) 157 [arXiv:鈥?107.鈥?084 ] [INSPIRE ].CrossRef ADS
    [85]I.W. Stewart, F.J. Tackmann and W.J. Waalewijn, N-jettiness: an inclusive event shape to veto jets, Phys. Rev. Lett. 105 (2010) 092002 [arXiv:鈥?004.鈥?489 ] [INSPIRE ].CrossRef ADS
    [86]L.G. Almeida, S.J. Lee, G. Perez, G.F. Sterman, I. Sung and J. Virzi, Substructure of high-p T Jets at the LHC, Phys. Rev. D 79 (2009) 074017 [arXiv:鈥?807.鈥?234 ] [INSPIRE ].ADS
    [87]S.D. Ellis, C.K. Vermilion, J.R. Walsh, A. Hornig and C. Lee, Jet shapes and jet algorithms in SCET, JHEP 11 (2010) 101 [arXiv:鈥?001.鈥?014 ] [INSPIRE ].CrossRef ADS
    [88]G. Parisi, Super inclusive cross-sections, Phys. Lett. B 74 (1978) 65 [INSPIRE ].MathSciNet ADS
    [89]J.F. Donoghue, F.E. Low and S.-Y. Pi, Tensor analysis of hadronic jets in quantum chromodynamics, Phys. Rev. D 20 (1979) 2759 [INSPIRE ].ADS
    [90]C.W. Bauer, F.J. Tackmann, J.R. Walsh and S. Zuberi, Factorization and resummation for dijet invariant mass spectra, Phys. Rev. D 85 (2012) 074006 [arXiv:鈥?106.鈥?047 ] [INSPIRE ].ADS
    [91]A.J. Larkoski, I. Moult and D. Neill, Toward multi-differential cross sections: measuring two angularities on a single jet, JHEP 09 (2014) 046 [arXiv:鈥?401.鈥?458 ] [INSPIRE ].CrossRef ADS
    [92]M. Procura, W.J. Waalewijn and L. Zeune, Resummation of double-differential cross sections and fully-unintegrated parton distribution functions, JHEP 02 (2015) 117 [arXiv:鈥?410.鈥?483 ] [INSPIRE ].CrossRef ADS
    [93]C.W. Bauer, S. Fleming, D. Pirjol and I.W. Stewart, An effective field theory for collinear and soft gluons: heavy to light decays, Phys. Rev. D 63 (2001) 114020 [hep-ph/鈥?011336 ] [INSPIRE ].
    [94]C.W. Bauer and I.W. Stewart, Invariant operators in collinear effective theory, Phys. Lett. B 516 (2001) 134 [hep-ph/鈥?107001 ] [INSPIRE ].
    [95]C.W. Bauer, D. Pirjol and I.W. Stewart, Soft collinear factorization in effective field theory, Phys. Rev. D 65 (2002) 054022 [hep-ph/鈥?109045 ] [INSPIRE ].
    [96]C.W. Bauer, S. Fleming, D. Pirjol, I.Z. Rothstein and I.W. Stewart, Hard scattering factorization from effective field theory, Phys. Rev. D 66 (2002) 014017 [hep-ph/鈥?202088 ] [INSPIRE ].
    [97]A.V. Manohar and I.W. Stewart, The zero-bin and mode factorization in quantum field theory, Phys. Rev. D 76 (2007) 074002 [hep-ph/鈥?605001 ] [INSPIRE ].
    [98]A.J. Larkoski, I. Moult and D. Neill, Building a better boosted top tagger, Phys. Rev. D 91 (2015) 034035 [arXiv:鈥?411.鈥?665 ] [INSPIRE ].ADS
    [99]A.J. Larkoski, I. Moult and D. Neill, Inclusive soft jet production, to appear.
    [100]S. Fleming, A.H. Hoang, S. Mantry and I.W. Stewart, Jets from massive unstable particles: top-mass determination, Phys. Rev. D 77 (2008) 074010 [hep-ph/鈥?703207 ] [INSPIRE ].
    [101]C.W. Bauer, S.P. Fleming, C. Lee and G.F. Sterman, Factorization of e + e 鈭?/sup> event shape distributions with hadronic final states in soft collinear effective theory, Phys. Rev. D 78 (2008) 034027 [arXiv:鈥?801.鈥?569 ] [INSPIRE ].ADS
    [102]J.-Y. Chiu, A. Jain, D. Neill and I.Z. Rothstein, A formalism for the systematic treatment of rapidity logarithms in quantum field theory, JHEP 05 (2012) 084 [arXiv:鈥?202.鈥?814 ] [INSPIRE ].MathSciNet CrossRef ADS
    [103]B. Grinstein and I.Z. Rothstein, Effective field theory and matching in nonrelativistic gauge theories, Phys. Rev. D 57 (1998) 78 [hep-ph/鈥?703298 ] [INSPIRE ].
    [104]M. Beneke and T. Feldmann, Multipole expanded soft collinear effective theory with nonAbelian gauge symmetry, Phys. Lett. B 553 (2003) 267 [hep-ph/鈥?211358 ] [INSPIRE ].
    [105]D. Bertolini, J. Thaler and J.R. Walsh, The first calculation of fractional jets, JHEP 05 (2015) 008 [arXiv:鈥?501.鈥?1965 ] [INSPIRE ].CrossRef ADS
    [106]E. Gardi, E. Laenen, G. Stavenga and C.D. White, Webs in multiparton scattering using the replica trick, JHEP 11 (2010) 155 [arXiv:鈥?008.鈥?098 ] [INSPIRE ].CrossRef ADS
    [107]E. Gardi and C.D. White, General properties of multiparton webs: proofs from combinatorics, JHEP 03 (2011) 079 [arXiv:鈥?102.鈥?756 ] [INSPIRE ].MathSciNet CrossRef ADS
    [108]E. Gardi, J.M. Smillie and C.D. White, The non-abelian exponentiation theorem for multiple Wilson lines, JHEP 06 (2013) 088 [arXiv:鈥?304.鈥?040 ] [INSPIRE ].MathSciNet CrossRef ADS
    [109]S. Catani and M. Grazzini, Infrared factorization of tree level QCD amplitudes at the next-to-next-to-leading order and beyond, Nucl. Phys. B 570 (2000) 287 [hep-ph/鈥?908523 ] [INSPIRE ].
    [110]A.M. Polyakov, Gauge fields as rings of glue, Nucl. Phys. B 164 (1980) 171 [INSPIRE ].MathSciNet CrossRef ADS
    [111]R.A. Brandt, F. Neri and M.-a. Sato, Renormalization of loop functions for all loops, Phys. Rev. D 24 (1981) 879 [INSPIRE ].ADS
    [112]G.P. Korchemsky and A.V. Radyushkin, Renormalization of the Wilson loops beyond the leading order, Nucl. Phys. B 283 (1987) 342 [INSPIRE ].CrossRef ADS
    [113]S.V. Ivanov, G.P. Korchemsky and A.V. Radyushkin, Infrared asymptotics of perturbative QCD: contour gauges, Yad. Fiz. 44 (1986) 230 [INSPIRE ].
    [114]G.P. Korchemsky, Asymptotics of the Altarelli-Parisi-Lipatov evolution kernels of parton distributions, Mod. Phys. Lett. A 4 (1989) 1257 [INSPIRE ].CrossRef ADS
    [115]G.P. Korchemsky and A.V. Radyushkin, Infrared factorization, Wilson lines and the heavy quark limit, Phys. Lett. B 279 (1992) 359 [hep-ph/鈥?203222 ] [INSPIRE ].
    [116]G.P. Korchemsky and G. Marchesini, Structure function for large x and renormalization of Wilson loop, Nucl. Phys. B 406 (1993) 225 [hep-ph/鈥?210281 ] [INSPIRE ].
    [117]T. Becher and M. Neubert, On the structure of infrared singularities of gauge-theory amplitudes, JHEP 06 (2009) 081 [Erratum ibid. 1311 (2013) 024] [arXiv:鈥?903.鈥?126 ] [INSPIRE ].
    [118]E. Gardi and L. Magnea, Factorization constraints for soft anomalous dimensions in QCD scattering amplitudes, JHEP 03 (2009) 079 [arXiv:鈥?901.鈥?091 ] [INSPIRE ].CrossRef ADS
    [119]L.J. Dixon, E. Gardi and L. Magnea, On soft singularities at three loops and beyond, JHEP 02 (2010) 081 [arXiv:鈥?910.鈥?653 ] [INSPIRE ].MathSciNet CrossRef ADS
    [120]C.W. Bauer and M.D. Schwartz, Event generation from effective field theory, Phys. Rev. D 76 (2007) 074004 [hep-ph/鈥?607296 ] [INSPIRE ].
    [121]C.W. Bauer and M.D. Schwartz, Improving jet distributions with effective field theory, Phys. Rev. Lett. 97 (2006) 142001 [hep-ph/鈥?604065 ] [INSPIRE ].
    [122]M. Baumgart, C. Marcantonini and I.W. Stewart, Systematic improvement of parton showers with effective theory, Phys. Rev. D 83 (2011) 034011 [arXiv:鈥?007.鈥?758 ] [INSPIRE ].ADS
    [123]J.G.M. Gatheral, Exponentiation of eikonal cross-sections in nonabelian gauge theories, Phys. Lett. B 133 (1983) 90 [INSPIRE ].MathSciNet CrossRef ADS
    [124]J. Frenkel and J.C. Taylor, Nonabelian eikonal exponentiation, Nucl. Phys. B 246 (1984) 231 [INSPIRE ].CrossRef ADS
    [125]J.-y. Chiu, A. Fuhrer, A.H. Hoang, R. Kelley and A.V. Manohar, Soft-collinear factorization and zero-bin subtractions, Phys. Rev. D 79 (2009) 053007 [arXiv:鈥?901.鈥?332 ] [INSPIRE ].ADS
    [126]R.K. Ellis, D.A. Ross and A.E. Terrano, The perturbative calculation of jet structure in e+e鈭?annihilation, Nucl. Phys. B 178 (1981) 421 [INSPIRE ].CrossRef ADS
    [127]S. Catani, G. Turnock and B.R. Webber, Heavy jet mass distribution in e + e 鈭?/sup> annihilation, Phys. Lett. B 272 (1991) 368 [INSPIRE ].CrossRef ADS
    [128]P.E.L. Rakow and B.R. Webber, Transverse momentum moments of hadron distributions in QCD jets, Nucl. Phys. B 191 (1981) 63 [INSPIRE ].CrossRef ADS
    [129]R.K. Ellis and B. Webber, QCD jet broadening in hadron hadron collisions, Conf. Proc. C860623 (1986) 74.
    [130]S. Catani, G. Turnock and B.R. Webber, Jet broadening measures in e + e 鈭?/sup> annihilation, Phys. Lett. B 295 (1992) 269 [INSPIRE ].CrossRef ADS
    [131]A.J. Larkoski, D. Neill and I. Moult, Resummation of subleading non-global logarithms from effective field theory, to appear.
    [132]C. Duhr and T. Gehrmann, The two-loop soft current in dimensional regularization, Phys. Lett. B 727 (2013) 452 [arXiv:鈥?309.鈥?393 ] [INSPIRE ].CrossRef ADS
    [133]Y. Li and H.X. Zhu, Single soft gluon emission at two loops, JHEP 11 (2013) 080 [arXiv:鈥?309.鈥?391 ] [INSPIRE ].CrossRef ADS
    [134]J.-P. Blaizot, E. Iancu and H. Weigert, Nonlinear gluon evolution in path integral form, Nucl. Phys. A 713 (2003) 441 [hep-ph/鈥?206279 ] [INSPIRE ].
    [135]A.H. Mueller and B. Patel, Single and double BFKL Pomeron exchange and a dipole picture of high-energy hard processes, Nucl. Phys. B 425 (1994) 471 [hep-ph/鈥?403256 ] [INSPIRE ].
    [136]I. Balitsky, Operator expansion for high-energy scattering, Nucl. Phys. B 463 (1996) 99 [hep-ph/鈥?509348 ] [INSPIRE ].
    [137]Y.V. Kovchegov, Small x F(2) structure function of a nucleus including multiple Pomeron exchanges, Phys. Rev. D 60 (1999) 034008 [hep-ph/鈥?901281 ] [INSPIRE ].
    [138]S. Caron-Huot, When does the gluon reggeize?, JHEP 05 (2015) 093 [arXiv:鈥?309.鈥?521 ] [INSPIRE ].CrossRef ADS
    [139]E. Avsar, Y. Hatta and T. Matsuo, Soft gluons away from jets: Distribution and correlation, JHEP 06 (2009) 011 [arXiv:鈥?903.鈥?285 ] [INSPIRE ].CrossRef ADS
    [140]Y. Hatta, Relating e + e 鈭?/sup> annihilation to high energy scattering at weak and strong coupling, JHEP 11 (2008) 057 [arXiv:鈥?810.鈥?889 ] [INSPIRE ].CrossRef ADS
    [141]A. Banfi, P.F. Monni, G.P. Salam and G. Zanderighi, Higgs and Z-boson production with a jet veto, Phys. Rev. Lett. 109 (2012) 202001 [arXiv:鈥?206.鈥?998 ] [INSPIRE ].CrossRef ADS
    [142]A. Banfi, G.P. Salam and G. Zanderighi, NLL+NNLO predictions for jet-veto efficiencies in Higgs-boson and Drell-Yan production, JHEP 06 (2012) 159 [arXiv:鈥?203.鈥?773 ] [INSPIRE ].CrossRef ADS
    [143]T. Becher and M. Neubert, Factorization and NNLL Resummation for Higgs Production with a Jet Veto, JHEP 07 (2012) 108 [arXiv:鈥?205.鈥?806 ] [INSPIRE ].CrossRef ADS
    [144]I.W. Stewart, F.J. Tackmann, J.R. Walsh and S. Zuberi, Jet p T resummation in Higgs production at N N LL 鈥?/sup> + N N LO, Phys. Rev. D 89 (2014) 054001 [arXiv:鈥?307.鈥?808 ] [INSPIRE ].ADS
    [145]T. Becher, M. Neubert and L. Rothen, Factorization and N 3 LL p +NNLO predictions for the Higgs cross section with a jet veto, JHEP 10 (2013) 125 [arXiv:鈥?307.鈥?025 ] [INSPIRE ].CrossRef ADS
    [146]I. Moult and I.W. Stewart, Jet vetoes interfering with H 鈫?W W , JHEP 09 (2014) 129 [arXiv:鈥?405.鈥?534 ] [INSPIRE ].CrossRef ADS
    [147]T.T. Jouttenus, I.W. Stewart, F.J. Tackmann and W.J. Waalewijn, Jet mass spectra in Higgs boson plus one jet at next-to-next-to-leading logarithmic order, Phys. Rev. D 88 (2013) 054031 [arXiv:鈥?302.鈥?846 ] [INSPIRE ].ADS
    [148]X. Liu and F. Petriello, Resummation of jet-veto logarithms in hadronic processes containing jets, Phys. Rev. D 87 (2013) 014018 [arXiv:鈥?210.鈥?906 ] [INSPIRE ].ADS
    [149]S. Gangal and F.J. Tackmann, Next-to-leading-order uncertainties in Higgs+2 jets from gluon fusion, Phys. Rev. D 87 (2013) 093008 [arXiv:鈥?302.鈥?437 ] [INSPIRE ].ADS
    [150]R. Boughezal, X. Liu, F. Petriello, F.J. Tackmann and J.R. Walsh, Combining resummed Higgs predictions across jet bins, Phys. Rev. D 89 (2014) 074044 [arXiv:鈥?312.鈥?535 ] [INSPIRE ].ADS
    [151]T.T. Jouttenus, I.W. Stewart, F.J. Tackmann and W.J. Waalewijn, The soft function for exclusive N-jet production at hadron colliders, Phys. Rev. D 83 (2011) 114030 [arXiv:鈥?102.鈥?344 ] [INSPIRE ].ADS
    [152]C.W. Bauer, C. Lee, A.V. Manohar and M.B. Wise, Enhanced nonperturbative effects in Z decays to hadrons, Phys. Rev. D 70 (2004) 034014 [hep-ph/鈥?309278 ] [INSPIRE ].
    [153]F.A. Berends and W.T. Giele, Multiple soft gluon radiation in parton processes, Nucl. Phys. B 313 (1989) 595 [INSPIRE ].CrossRef ADS
    [154]S. Catani and M. Grazzini, The soft gluon current at one loop order, Nucl. Phys. B 591 (2000) 435 [hep-ph/鈥?007142 ] [INSPIRE ].
    [155]M. Ritzmann and W.J. Waalewijn, Fragmentation in jets at NNLO, Phys. Rev. D 90 (2014) 054029 [arXiv:鈥?407.鈥?272 ] [INSPIRE ].ADS
  • 作者单位:Andrew J. Larkoski (1)
    Ian Moult (1)
    Duff Neill (1)

    1. Center for Theoretical Physics, Massachusetts Institute of Technology, Cambridge, MA, 02139, U.S.A.
  • 刊物类别:Physics and Astronomy
  • 刊物主题:Physics
    Elementary Particles and Quantum Field Theory
    Quantum Field Theories, String Theory
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1029-8479
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