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Prafulla Kumar Behera

Researcher at Indian Institute of Technology Madras

Publications -  1436
Citations -  74140

Prafulla Kumar Behera is an academic researcher from Indian Institute of Technology Madras. The author has contributed to research in topics: Large Hadron Collider & Branching fraction. The author has an hindex of 109, co-authored 1204 publications receiving 65248 citations. Previous affiliations of Prafulla Kumar Behera include CERN & Aomori University.

Papers
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Suppression of ϒ(1S), ϒ(2S), and ϒ(3S) quarkonium states in PbPb collisions at sNN=2.76TeV

Vardan Khachatryan, +2277 more
- 10 Jul 2017 - 
TL;DR: In this article, the production yields of quarkonium states are measured through their decays into muon pairs in the CMS detector, in PbPb and pp collisions at the centre-of-mass energy per nucleon pair of 2.76 TeV.

Measurement of the t-channel single top-quark production cross section in pp collisions at √s = 7 TeV with the ATLAS detector

Georges Aad, +3036 more
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Measurement And Qcd Analysis Of Double-differential Inclusive Jet Cross Sections In Pp Collisions At √s=8 Tev And Cross Section Ratios To 2.76 And 7 Tev

Vardan Khachatryan, +2311 more
TL;DR: In this paper, a measurement of the double-differential inclusive jet cross section as a function of the jet transverse momentum pT and the absolute jet rapidity abs(y) is presented.
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Evidence for Direct CP Violation from Dalitz-plot analysis of B+/- -> K+/- pi+/- pi-/+

B. Aubert, +542 more
- 14 Jul 2008 - 
TL;DR: In this article, a Dalitz-plot analysis of the charmless hadronic decays of charged B mesons to the final state K+/-pi+/- pi-/+. using a sample of 383.2 +/- 4.2 million BBbar pairs collected by the BaBar detector, they measure CP-averaged branching fractions and direct CP asymmetries for intermediate resonant and nonresonant contributions.
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Search for top squark pair production in pp collisions at sqrt(s)=13 TeV using single lepton events

Albert M. Sirunyan, +2296 more
TL;DR: In this article, a search for top squark pair production in pp collisions at root s = 13 TeV is performed using events with a single isolated electron or muon, jets, and a large transverse momentum imbalance.