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Niladribihari Sahoo

Researcher at Tata Institute of Fundamental Research

Publications -  787
Citations -  38060

Niladribihari Sahoo is an academic researcher from Tata Institute of Fundamental Research. The author has contributed to research in topics: Large Hadron Collider & Standard Model. The author has an hindex of 81, co-authored 783 publications receiving 31071 citations. Previous affiliations of Niladribihari Sahoo include National Institute of Science Education and Research & Université libre de Bruxelles.

Papers
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Combined Measurement of the Higgs Boson Mass in pp Collisions at √s=7 and 8 TeV with the ATLAS and CMS Experiments

Georges Aad, +5120 more
TL;DR: A measurement of the Higgs boson mass is presented based on the combined data samples of the ATLAS and CMS experiments at the CERN LHC in the H→γγ and H→ZZ→4ℓ decay channels.
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Particle-flow reconstruction and global event description with the CMS detector

Albert M. Sirunyan, +2215 more
TL;DR: A fully-fledged particle-flow reconstruction algorithm tuned to the CMS detector was developed and has been consistently used in physics analyses for the first time at a hadron collider as mentioned in this paper.
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Event generator tunes obtained from underlying event and multiparton scattering measurements

Vardan Khachatryan, +2286 more
TL;DR: Combined fits to CMS UE proton–proton data at 7TeV and to UEProton–antiproton data from the CDF experiment at lower s, are used to study the UE models and constrain their parameters, providing thereby improved predictions for proton-proton collisions at 13.
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Global Λ hyperon polarization in nuclear collisions

L. Adamczyk, +341 more
- 23 Jan 2017 - 
TL;DR: In this article, an alignment between the global angular momentum of a non-central collision and the spin of emitted particles is presented, revealing that the fluid produced in heavy ion collisions is the most vortical system so far observed.
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The CMS trigger system

U. Bhawandeep, +2292 more
TL;DR: In this paper, the trigger system consists of two levels designed to select events of potential physics interest from a GHz (MHz) interaction rate of proton-proton (heavy ion) collisions.