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Ryang-hoon Lim

Yonsei University · Physics and Astronomy

About the Lab

Professor Ryang-hoon Lim's research lab specializes in experimental particle physics and high-energy nuclear physics, focusing on the properties of the quark-gluon plasma formed in relativistic heavy-ion collisions. The lab investigates quantum chromodynamics (QGP) phenomena through precision measurements of heavy quarks, quarkonia, and hadronic correlations in proton-proton, proton-nucleus, and nucleus-nucleus collisions. Key research directions include probing initial-state nuclear effects, final-state interactions, and the dynamics of particle production in extreme conditions of temperature and density.

quark-gluon plasmaheavy quarksfemtoscopic correlationsquarkonia suppressionhigh-energy nuclear collisions

Research Overview

Papers
11
Total Citations
4
Papers (5y)
8
Primary Field
Physics and Astronomy

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
8total
2017
2023
2024
2025
2026
Citations per year (5y)
4total
20172023202420252026

Selected Papers

11
1
Article|2 citations·2025
Further characterisation of Digital Pixel Test Structures implemented in a 65 nm CMOS process
G. Aglieri Rinella, N. Apadula, A. Andronic, M. Antonelli, M. Aresti, Roberto Baccomi, P. Becht, S. Beolè, M. Borri, Justus Braach, M. D. Buckland, E. Buschmann
SJR Q2Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated EquipmentOA

The next generation of MAPS for future tracking detectors will have to meet stringent requirements placed on them. One such detector is the ALICE ITS3 that aims to be very light at 0.07 % X/X 0 per layer and have a low power consumption in the active area of 40 mW/cm 2 by implementing wafer-scale MAPS bent into cylindrical half layers. To address these challenging requirements, the ALICE ITS3 project, in conjunction with the CERN EP R&D on monolithic pixel sensors, proposed the Tower Partners Se

Electrical and Electronic EngineeringEngineering
2
Article|1 citations·2017
PHENIX measurements of open and hidden heavy flavor in p + p , p +Al, and p / d / 3 He+Au collisions across a wide range of rapidity
Sanghoon Lim
SJR Q2Nuclear Physics AOA

Despite intense theoretical and experimental investigation, the physical mechanisms governing the suppression of bound quark-antiquark states in nuclear collisions are not yet fully understood. While color screening in a plasma phase is expected to play a role, there are numerous other possible suppression mechanisms that do not require deconfinement, as well as effects on the heavy quark initial state in the nucleus which can also play a role. To study these effects, the PHENIX collaboration ha

Nuclear and High Energy PhysicsPhysics and Astronomy
3
Preprint|1 citations·2026
Observation of partonic flow in proton—proton and proton—nucleus collisions
S. Acharya, Apar Agarwal, Gianluca Aglieri Rinella, Luca Aglietta, M. Agnello, N. Agrawal, Z. Ahammed, S. Ahmad, S. U. Ahn, I. Ahuja, A. Akindinov, Valentina Akishina
SJR Q1Nature CommunicationsOA

Quantum Chromodynamics predicts a phase transition from hadronic matter to quark-gluon plasma (QGP) at high temperatures and energy densities, where quarks and gluons (partons) are no longer confined within hadrons. The QGP forms in ultrarelativistic heavy-ion collisions. Anisotropic flow coefficients, quantifying the azimuthal expansion of produced matter, probe QGP properties. Flow measurements in high-energy heavy-ion collisions show a distinctive grouping of anisotropic flow for baryons and

Nuclear and High Energy PhysicsPhysics and Astronomy
4
Article|0 citations·2014
PHENIX recent heavy flavor results
Sanghoon Lim
SJR Q2Nuclear Physics AOA
Nuclear and High Energy PhysicsPhysics and Astronomy
5
Article|0 citations·2014
Open heavy flavor measurements ind+Au collisions at PHENIX experiment
Sanghoon Lim
EPJ Web of ConferencesOA

The heavy quarks produced in the early stage of heavy-ion collisions are very effective probes of the dense partonic medium produced at RHIC. PHENIX has the ability to measure heavy quark production through single electrons in the central arm spectrometers (|η| < 0.35) and single muons in the forward (backward) muon spectrometers (1.2 < |η| < 2.2). As these single leptons are from open heavy-flavor meson semi-leptonic decays, initial state cold nuclear matter effects on heavy quark production ca

Nuclear and High Energy PhysicsPhysics and Astronomy
6
Article|0 citations·2014
Measurement of electrons from heavy-flavor decays from p+p, d+Au, and Cu + Cu collisions in the PHENIX experiment
Sanghoon Lim
SJR Q2Nuclear Physics AOA
Nuclear and High Energy PhysicsPhysics and Astronomy
7
Article|0 citations·2026
Exploring hadronic rescattering effects on resonance productions in pp and p–Pb collisions with Pythia8
Su-Jeong Ji, Gyeongbin Park, Bong-Hwi Lim, Sanghoon Lim
SJR Q2Nuclear Physics AOA

In relativistic heavy-ion collisions, the quark-gluon plasma is created, and as the medium cools down, the system transitions into a hadronic phase. While such interactions are well established for large systems, such as Pb-Pb collisions, their relevance in smaller collision systems remains unclear. Consequently, hadronic interactions during the hadronic phase are studied in pp collisions at $\sqrt{s}=13$ TeV and p-Pb collisions at $\sqrt{s_{\rm{NN}}}=5.02$ TeV with the PYTHIA8 event generator.

Nuclear and High Energy PhysicsPhysics and Astronomy
8
Preprint|0 citations·2024
Studying the interaction between charm and light-flavor mesons
Shreyasi Acharya, D. Adamová, Gianluca Aglieri Rinella, Luca Aglietta, M. Agnello, N. Agrawal, Zubayer Ahammed, S. Ahmad, S. U. Ahn, I. Ahuja, A. Akindinov, Valentina Akishina
arXiv (Cornell University)OA

The two-particle momentum correlation functions between charm mesons $(D^{*±}$ and $D^{±})$ and charged light-flavor mesons $(π^± and K^±)$ in all charge combinations are measured for the first time by the ALICE Collaboration in high-multiplicity proton–proton collisions at a center-of-mass energy of $\sqrt{s}=13$ TeV. For DK and D*K pairs, the experimental results are in agreement with theoretical predictions of the residual strong interaction based on quantum chromodynamics calculations on the

Nuclear and High Energy PhysicsPhysics and Astronomy
9
Preprint|0 citations·2025
Direct-photon production in inelastic and high-multiplicity proton–proton collisions at √s = 13 TeV
Shreyasi Acharya, Apar Agarwal, Gianluca Aglieri Rinella, Luca Aglietta, M. Agnello, N. Agrawal, Z. Ahammed, S. Ahmad, S. U. Ahn, I. Ahuja, A. Akindinov, Valentina Akishina
arXiv (Cornell University)OA

In this letter, we present the first measurement of direct photons at the transverse momentum of 1 &lt; $p_{T}$ &lt; GeV/ c at midrapidity |η| &lt; 0.8 in inelastic and high-multiplicity proton–proton collisions at a centre-of-mass energy of $\sqrt{s}$ = 13 TeV. The fraction of virtual direct photons in the inclusive virtual photon spectrum is obtained from a fit to the dielectron invariant mass spectrum. In the limit of zero invariant mass, this fraction is equal to the relative contribution of

Nuclear and High Energy PhysicsPhysics and Astronomy
10
Preprint|0 citations·2025
Rapidity dependence of antideuteron coalescence in pp collisions at √s = 13 TeV with ALICE
S. Acharya, D. Adamová, Apar Agarwal, G. Aglieri Rinella, Luca Aglietta, M. Agnello, N. Agrawal, Z. Ahammed, S. Ahmad, S. U. Ahn, I. Ahuja, A. Akindinov
arXiv (Cornell University)OA

The production yields of antideuterons and antiprotons are measured in pp collisions at a center-of-mass energy of $\sqrt{s}$ = 13 TeV, as a function of transverse momentum ($p_T$) and rapidity (y), for the first time rapidity-differentially up to |y| = 0.7. The measured spectra are used to study the $p_T$ and rapidity dependence of the coalescence parameter $B_2$, which quantifies the coalescence probability of antideuterons. The $p_T$ and rapidity dependence of the obtained $B_2$ is extrapolat

Nuclear and High Energy PhysicsPhysics and Astronomy
11
Preprint|0 citations·2023
Investigating the composition of the K_0^⁎(700) state with π±K_S^0 correlations at the LHC
Shreyasi Acharya, D. Adamová, Gianluca Aglieri Rinella, Luca Aglietta, M. Agnello, N. Agrawal, Z. Ahammed, S. Ahmad, S. U. Ahn, I. Ahuja, A. Akindinov, Mohammad Al-Turany
arXiv (Cornell University)OA

The first measurements of femtoscopic correlations with the particle pair combinations $π±K_S^0$ in pp collisions at $\sqrt{s}$ =13 TeV at the Large Hadron Collider (LHC) are reported by the ALICE experiment. Using the femtoscopic approach, it is shown that it is possible to study the elusive $K_0^⁎(700)$ particle that has been considered a tetraquark candidate for over forty years. Source and final-state interaction parameters are extracted by fitting a model assuming a Gaussian source to the e

Nuclear and High Energy PhysicsPhysics and Astronomy

Research Areas

Nuclear and High Energy PhysicsElectrical and Electronic Engineering

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