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Kreso Kadija

Researcher at CERN

Publications -  1283
Citations -  105301

Kreso Kadija is an academic researcher from CERN. The author has contributed to research in topics: Large Hadron Collider & Standard Model. The author has an hindex of 135, co-authored 1270 publications receiving 95988 citations. Previous affiliations of Kreso Kadija include Creighton University & Université libre de Bruxelles.

Papers
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Event Shapes and Azimuthal Correlations in Z+jets Events in Pp Collisions at √S=7 TeV

S. Chatrchyan, +2206 more
- 24 May 2013 - 
TL;DR: In this paper, an analysis of event shapes and azimuthal correlations is presented for events where a Z boson is produced in association with jets in proton-proton collisions.
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Search for point-like sources of ultra-high energy neutrinos at the Pierre Auger Observatory and improved limit on the diffuse flux of tau neutrinos

P. Abreu, +532 more
TL;DR: In this article, upper limits on the neutrino flux from point-like sources have been derived as a function of the source declination for Earth-skimming and downward-going neutrinos.
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Evidence for associated production of a Higgs boson with a top quark pair in final states with electrons, muons, and hadronically decaying τ leptons at √s=13 TeV

Albert M. Sirunyan, +2390 more
TL;DR: In this paper, a search for the standard model Higgs boson produced in association with a top quark pair in final states with electrons, muons, and hadronically decaying leptons is presented.
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Constraints on anomalous Higgs boson couplings using production and decay information in the four-lepton final state

Albert M. Sirunyan, +2244 more
- 10 Dec 2017 - 
TL;DR: In this article, a search is performed for anomalous interactions of the recently discovered Higgs boson using matrix element techniques with the information from its decay to four leptons and from associated production with two quark jets.
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Measurement and interpretation of differential cross sections for Higgs boson production at s=13TeV

Albert M. Sirunyan, +2317 more
- 10 May 2019 - 
TL;DR: In this paper, the Higgs transverse momentum spectrum was used to place limits on the top, bottom, and charm quarks, as well as its direct coupling to the gluon field.