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Theoretical physicists working at a blackboard collaboration pod in the Beecroft building.
Credit: Jack Hobhouse

Prof. Gavin Salam FRS

Royal Society Research Professor, Professor of Theoretical Physics and Senior Research Fellow at All Souls College

Research theme

  • Fundamental particles and interactions

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Particle theory
gavin.salam@physics.ox.ac.uk
Telephone: 01865 273976
Rudolf Peierls Centre for Theoretical Physics, room 70.25
  • About
  • Research
  • Prizes, awards and recognition
  • Publications

A matrix formulation for small-x singlet evolution

Journal of High Energy Physics Springer Nature 2007:08 (2007) 046

Authors:

Marcello Ciafaloni, Dimitri Colferai, Gavin P Salam, Anna M Staśto
More details from the publisher
Details from ArXiV

A matrix formulation for small-x singlet evolution

(2007)

Authors:

M Ciafaloni, D Colferai, GP Salam, AM Stasto
More details from the publisher

Pileup subtraction using jet areas

(2007)

Authors:

Matteo Cacciari, Gavin P Salam
More details from the publisher

Accurate QCD predictions for heavy-quark jets at the Tevatron and LHC

Journal of High Energy Physics 2007:7 (2007)

Authors:

A Banfi, GP Salam, G Zanderighi

Abstract:

Heavy-quark jets are important in many of today's collider studies and searches, yet predictions for them are subject to much larger uncertainties than for light jets. This is because of strong enhancements in higher orders from large logarithms, ln(pt/mQ). We propose a new definition of heavy-quark jets, which is free of final-state logarithms to all orders and such that all initial-state collinear logarithms can be resummed into the heavy-quark parton distributions. Heavy-jet spectra can then be calculated in the massless approximation, which is simpler than a massive calculation and reduces the theoretical uncertainties by a factor of three. This provides the first ever accurate predictions for inclusive b- and c-jets, and the latter have significant discriminatory power for the intrinsic charm content of the proton. The techniques introduced here could be used to obtain heavy-flavour jet results from existing massless next-to-leading order calculations for a wide range of processes. We also discuss the experimental applicability of our flavoured jet definition. © SISSA 2007.
More details from the publisher

Power corrections for jets at hadron colliders

(2007)

Authors:

Matteo Cacciari, Mrinal Dasgupta, Lorenzo Magnea, Gavin Salam
More details from the publisher
Details from ArXiV

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