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Choong Sun Kim

Researcher at Yonsei University

Publications -  91
Citations -  4006

Choong Sun Kim is an academic researcher from Yonsei University. The author has contributed to research in topics: Neutrino & Quark. The author has an hindex of 29, co-authored 91 publications receiving 3682 citations. Previous affiliations of Choong Sun Kim include Korea Institute for Advanced Study & Durham University.

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A facility to search for hidden particles at the CERN SPS: the SHiP physics case.

Sergey Alekhin, +95 more
TL;DR: It is demonstrated that the SHiP experiment has a unique potential to discover new physics and can directly probe a number of solutions of beyond the standard model puzzles, such as neutrino masses, baryon asymmetry of the Universe, dark matter, and inflation.
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A facility to Search for Hidden Particles at the CERN SPS: the SHiP physics case

TL;DR: The SHiP (Search for Hidden Particles) experiment at CERN as discussed by the authors was designed to search for new physics in the largely unexplored domain of very weakly interacting particles with masses below the Fermi scale, inaccessible to the LHC experiments.
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Supersymmetry Parameter Analysis: SPA Convention and Project

Juan Antonio Aguilar-Saavedra, +128 more
TL;DR: In this article, a supersymmetry Parameter Analysis SPA (SPA) scheme is proposed based on a consistent set of conventions and input parameters, which connect parameters in different schemes and relate the Lagrangian parameters to physical observables at LHC and high energy e+e-linear collider experiments.
Journal ArticleDOI

Supersymmetry parameter analysis : SPA convention and project

Juan Antonio Aguilar-Saavedra, +128 more
TL;DR: In this article, a supersymmetry Parameter Analysis SPA (SPA) scheme is proposed based on a consistent set of conventions and input parameters, which connect parameters in different schemes and relate the Lagrangian parameters to physical observables at LHC and high energy e(+)e(-) linear collider experiments, i.e., masses, mixings, decay widths and production cross sections for supersymmetric particles.
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The International Large Detector: Letter of Intent

T. Abe, +702 more
TL;DR: The International Large Detector (ILD) is a concept for a detector at the International Linear Collider, ILC as discussed by the authors, which will collide electrons and positrons at energies of initially 500 GeV, upgradeable to 1 TeV.