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Hyun-Chul Kim

Researcher at Inha University

Publications -  4123
Citations -  199327

Hyun-Chul Kim is an academic researcher from Inha University. The author has contributed to research in topics: Large Hadron Collider & Lepton. The author has an hindex of 176, co-authored 4076 publications receiving 183227 citations. Previous affiliations of Hyun-Chul Kim include Konkuk University & University of Edinburgh.

Papers
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An electron‐beam microcolumn with improved resolution, beam current, and stability

TL;DR: In this paper, a 1 keV electron beam microcolumn that focuses 1 nA of beam current into a 10 nm full width half-maximum beam diameter at a working distance of 1 mm was built and tested.
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Observation of B+→K̄0K+ and B0→K0K̄0

Bernard Aubert, +601 more
TL;DR: Using a vertexing technique previously employed in several analyses of all-neutral final states containing kaons, the first measurement of time-dependent CP-violating asymmetries in B0 --> K0K(S)0 is reported, obtaining S = -1.28(-0.73-0.16) and C = -0.40+/-0.06.
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Observation of Correlated Azimuthal Anisotropy Fourier Harmonics in pp and p+Pb Collisions at the LHC.

Albert M. Sirunyan, +2205 more
TL;DR: The azimuthal anisotropy Fourier coefficients (v_{n}) in 8.16 TeV p+Pb data are extracted via long-range two-particle correlations as a function of the event multiplicity and compared to corresponding results in pp and PbPb collisions, finding the v_{2} and v_{4} coefficients to be positively correlated in all collision systems.
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Commissioning and performance of the CMS pixel tracker with cosmic ray muons

S. Chatrchyan, +2462 more
TL;DR: The pixel detector of the Compact Muon Solenoid experiment consists of three barrel layers and two disks for each endcap as discussed by the authors, which was installed in summer 2008, commissioned with charge injections, and operated in the 3.8 T magnetic field during cosmic ray data taking.
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Friedel–Crafts Acylation of p -Xylene over Sulfonated Zirconium Terephthalates

TL;DR: In this paper, a sulfonated Zr-terephthalate metal-organic framework (MOF) (UiO-66-SO3H) was prepared using two different methods: post-synthetic grafting onto the Zr open metal sites and direct solvothermal method using monosodium 2-sulfoterephthalates.