4.4 Article

Precise predictions for the angular coefficients in Z-boson production at the LHC

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 11, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP11(2017)003

关键词

QCD Phenomenology

资金

  1. Swiss National Supercomputing Centre (CSCS) [p501b]
  2. U.K. Science and Technology Facilities Council
  3. Swiss National Science Foundation (SNF) [200020-162487, CRSII2-160814]
  4. Research Executive Agency (REA) of the European Union [PITN-GA-2012-316704]
  5. ERC Advanced Grant MC@NNLO [340983]
  6. STFC [ST/G000905/1] Funding Source: UKRI
  7. Swiss National Science Foundation (SNF) [200020_162487] Funding Source: Swiss National Science Foundation (SNF)

向作者/读者索取更多资源

The angular distributions of lepton pairs in the Drell-Yan process can provide rich information on the underlying QCD production mechanisms. These dynamics can be parameterised in terms of a set of frame dependent angular coefficients, A(i=0),...,7, which depend on the invariant mass, transverse momentum, and rapidity of the lepton pair. Motivated by recent measurements of these coefficients by ATLAS and CMS, and in particular by the apparent violation of the Lam-Tung relation A(0) - A(2) = 0, we perform a precision study of the angular coefficients at O (alpha(3)(s)) in perturbative QCD. We make predictions relevant for pp collisions at root s = 8TeV, and perform comparisons with the available ATLAS and CMS data as well as providing predictions for a prospective measurement at LHCb. To expose the violation of the Lam-Tung relationship we propose a new observable Delta(LT) = 1 A 2 = A 0 that is more sensitive to the dynamics in the region where A(0) and A(2) are both small. We find that the O (alpha(3)(s)) corrections have an important impact on the pT; Z distributions for several of the angular coefficients, and are essential to provide an adequate description of the data. The compatibility of the available ATLAS and CMS data is reassessed by performing a partial chi(2) test with respect to the central theoretical prediction which shows that chi(2) = N-data is significantly reduced by going from O (alpha(2)(s)) to O (alpha(3)(s)).

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