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Jinhong Yu

Researcher at Chinese Academy of Sciences

Publications -  650
Citations -  28180

Jinhong Yu is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Large Hadron Collider & Thermal conductivity. The author has an hindex of 79, co-authored 577 publications receiving 22181 citations. Previous affiliations of Jinhong Yu include Federal University of Rio de Janeiro & CERN.

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Small angle J/ψ production in pp¯ collisions at √s=1.8TeV

Brad Abbott, +371 more
TL;DR: In this paper, the first measurement of the inclusive J/Psi production cross section in the forward pseudorapidity region 2.5 <|eta|<3.7 in ppbar collisions at sqrt(s)=1.8TeV was presented.
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Search for lepton-flavor violation in different-flavor, high-mass final states in pp collisions at √s = 13 TeV with the ATLAS detector

Morad Aaboud, +2923 more
- 17 Jul 2018 - 
TL;DR: In this article, a search for a heavy particle decaying into different-flavor, dilepton pairs (e mu, e tau or mu tau) using 36.1 fb(-1) of proton-proton collision data at root s = 13 TeV collected in...
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Role of electrolytes on the electrochemical characteristics of Fe3O4/MXene/RGO composites for supercapacitor applications

TL;DR: In this paper, a hybrid composite material consisting of iron oxide (Fe3O4) /MXene /reduced graphene oxide (RGO) without any impurities using optimized experimental parameters to be utilized in next-generation supercapacitor applications and the searching of suitable electrolyte for the developed hybrid electrode materials.
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Search for Magnetic Monopoles and Stable High-Electric-Charge Objects in 13 Tev Proton-Proton Collisions with the ATLAS Detector

Georges Aad, +2921 more
TL;DR: A search for magnetic monopoles and high-electric-charge objects is presented using 34.4 fb^{-1} of 13 TeV pp collision data collected by the ATLAS detector at the LHC during 2015 and 2016, improving by approximately a factor of 5 the constraints on the direct production of magnetic monopole carrying one or two Dirac magnetic charges.
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Efficient Thermal Transport Highway Construction Within Epoxy Matrix via Hybrid Carbon Fibers and Alumina Particles.

TL;DR: A facile method was proposed to prepare the epoxy composite with carbon fibers (CFs) and alumina (Al2O3), which can effectively reduce the interfacial thermal resistance between the matrix and the CFs.