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Inhyuk Nam

Ulsan National Institute of Science and Technology · 物理学・天文学

研究室紹介

Professor Inhyuk Nam's research lab specializes in high-energy-density physics, focusing on the behavior of matter under extreme conditions of pressure and temperature. The lab employs advanced x-ray diagnostics, such as x-ray diffraction and Thomson scattering, to study phase transitions, structural dynamics, and chemical reactions in materials like transition metals, planetary constituents, and hydrocarbons. Key research directions include laser-driven shock compression, inertial confinement fusion, and the dynamics of dense plasmas, with strong integration of first-principles simulations and cutting-edge experimental platforms like X-ray free-electron lasers. The lab also explores novel particle acceleration schemes using laser-plasma interactions, aiming to enhance electron beam quality and energy gain for applications in science and technology.

high-pressure physicsx-ray scatteringlaser wakefield accelerationdense plasmasextreme matter

Research Overview

Papers
104
Total Citations
1,621
Papers (5y)
43
Primary Field
物理学・天文学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
43total
2021
2022
2023
2024
2025
Citations per year (5y)
220total
20212022202320242025

Selected Papers

15
1
Article|530 citations·2017
Hard X-ray free-electron laser with femtosecond-scale timing jitter
Heung-Sik Kang, Chang‐Ki Min, Hoon Heo, Changbum Kim, Haeryong Yang, Gyujin Kim, Inhyuk Nam, Soung Youl Baek, Hyojin Choi, Geonyeong Mun, Byoung Ryul Park, Young Jin Suh
SJR Q1Nature Photonics
RadiationPhysics and Astronomy
2
Article|224 citations·2017
Formation of diamonds in laser-compressed hydrocarbons at planetary interior conditions
D. Kraus, Jan Vorberger, A. Pak, N. J. Hartley, L. B. Fletcher, S. Frydrych, Eric Galtier, E. J. Gamboa, D. O. Gericke, S. H. Glenzer, E. Granados, M. J. MacDonald
SJR Q1Nature AstronomyOA
GeophysicsEarth and Planetary Sciences
3
Article|95 citations·2021
High-brightness self-seeded X-ray free-electron laser covering the 3.5 keV to 14.6 keV range
Inhyuk Nam, Chang‐Ki Min, Bonggi Oh, Gyujin Kim, Donghyun Na, Young Jin Suh, Haeryong Yang, Myung Hoon Cho, Changbum Kim, Minjae Kim, Chi Hyun Shim, Jun Ho Ko
SJR Q1Nature PhotonicsOA
RadiationPhysics and Astronomy
4
Article|63 citations·2017
Ultrafast X-Ray Diffraction Studies of the Phase Transitions and Equation of State of Scandium Shock Compressed to 82 GPa
R. Briggs, M. G. Gorman, A. L. Coleman, R. S. McWilliams, E. E. McBride, D. McGonegle, J. S. Wark, L. J. Peacock, S. D. Rothman, Simon G. MacLeod, C. A. Bolme, A. E. Gleason
SJR Q1Physical Review LettersOA

Using x-ray diffraction at the Linac Coherent Light Source x-ray free-electron laser, we have determined simultaneously and self-consistently the phase transitions and equation of state (EOS) of the lightest transition metal, scandium, under shock compression. On compression scandium undergoes a structural phase transition between 32 and 35 GPa to the same bcc structure seen at high temperatures at ambient pressures, and then a further transition at 46 GPa to the incommensurate host-guest polymo

GeophysicsEarth and Planetary Sciences
5
Article|42 citations·2020
Demonstration of X-ray Thomson scattering as diagnostics for miscibility in warm dense matter
S. Frydrych, Jan Vorberger, N. J. Hartley, A. K. Schuster, Kushal Ramakrishna, A. M. Saunders, Tim van Driel, R. W. Falcone, L. B. Fletcher, Eric Galtier, E. J. Gamboa, S. H. Glenzer
SJR Q1Nature CommunicationsOA

The gas and ice giants in our solar system can be seen as a natural laboratory for the physics of highly compressed matter at temperatures up to thousands of kelvins. In turn, our understanding of their structure and evolution depends critically on our ability to model such matter. One key aspect is the miscibility of the elements in their interiors. Here, we demonstrate the feasibility of X-ray Thomson scattering to quantify the degree of species separation in a 1:1 carbon-hydrogen mixture at a

GeophysicsEarth and Planetary Sciences
6
Article|38 citations·2018
High-pressure chemistry of hydrocarbons relevant to planetary interiors and inertial confinement fusion
D. Kraus, N. J. Hartley, S. Frydrych, A. K. Schuster, K. Rohatsch, Melanie Rödel, T. E. Cowan, Shaughnessy Brown, Eric Cunningham, Tim van Driel, L. B. Fletcher, Eric Galtier
SJR Q2Physics of PlasmasOA

Diamond formation in polystyrene (C8H8)n, which is laser-compressed and heated to conditions around 150 GPa and 5000 K, has recently been demonstrated in the laboratory [Kraus et al., Nat. Astron. 1, 606–611 (2017)]. Here, we show an extended analysis and comparison to first-principles simulations of the acquired data and their implications for planetary physics and inertial confinement fusion. Moreover, we discuss the advanced diagnostic capabilities of adding high-quality small angle X-ray sca

Materials ChemistryMaterials Science
7
Article|38 citations·2011
Controlling the betatron oscillations of a wakefield-accelerated electron beam by temporally asymmetric laser pulses
Inhyuk Nam, Min Sup Hur, Han S. Uhm, N. Hafz, Hyyong Suk
SJR Q2Physics of Plasmas

Based on two-dimensional particle-in-cell simulations, we investigated the electron beam’s transverse oscillations by temporally asymmetric laser pulses in laser wakefield acceleration. Of particular interest in this article are the effects of ultrashort laser pulses having sharp rising and slow falling time scales. In this situation, the accelerated electron beam interacts directly with the laser field and undergoes transverse oscillations due to a phase-slip with the laser field. This oscillat

Nuclear and High Energy PhysicsPhysics and Astronomy
8
Article|37 citations·2014
Laser wakefield acceleration of electrons from a density-modulated plasma
Devki Nandan Gupta, K. Gopal, Inhyuk Nam, В. В. Кулагин, Hyyong Suk
SJR Q3Laser and Particle Beams

Abstract This research reports the increased electron energy gain from laser wakefield acceleration in density-modulated plasma with an external magnetic field. Periodic plasma density- modulation can excite higher harmonics of different phase velocities of fundamental wakefield that can assist in improving the self-trapping of pre-accelerated electrons to accelerate them for higher energy. Furthermore, the applied magnetic field assisted self-injection can also contribute in electron energy enh

Nuclear and High Energy PhysicsPhysics and Astronomy
9
Article|35 citations·2020
Melting and refreezing of zirconium observed using ultrafast x-ray diffraction
Harry B. Radousky, Michael R. Armstrong, Ryan Austin, Elissaios Stavrou, Shaughnessy Brown, A. A. Chernov, A. E. Gleason, E. Granados, Paulius Grivickas, Nicholas Holtgrewe, Hae Ja Lee, Sergey S. Lobanov
SJR Q1Physical Review ResearchOA

This paper studies zirconium subjected to high pressure conditions. Using x-ray diffraction, the authors observe the onset of melting at short times after shocking, and refreeze shortly thereafter. The latent heat of crystallization is found to provide the energy for the recrystallization process

GeophysicsEarth and Planetary Sciences
10
Article|12 citations·2015
Highly-efficient 20 TW Ti:sapphire laser system using optimized diverging beams for laser wakefield acceleration experiments
Inhyuk Nam, Minseok Kim, Tae-Hee Lee, Seung Woo Lee, Hyyong Suk
SJR Q2Current Applied Physics
Nuclear and High Energy PhysicsPhysics and Astronomy
11
Article|10 citations·2018
Soft X-ray harmonic lasing self-seeded free electron laser at Pohang Accelerator Laboratory X-ray free electron laser
Inhyuk Nam, Chang‐Ki Min, Changbum Kim, Haeryong Yang, Gyujin Kim, Hoon Heo, Soonnam Kwon, Sang Han Park, Heung-Sik Kang
SJR Q1Applied Physics Letters

The demonstration of a harmonic lasing self-seeded free-electron laser (HLSS FEL) scheme in the soft X-ray range at the Pohang Accelerator Laboratory X-ray Free Electron Laser is presented. We report the experimental results of HLSS FEL radiation with the shortest wavelength of 1 nm by using the optimized phase shift of 2/3π. The key feature of the HLSS scheme is that the mode number is decreased (the longitudinal coherence length is enhanced) which is directly observed using a single-shot spect

Electrical and Electronic EngineeringEngineering
12
Article|8 citations·2012
Generating nearly single-cycle pulses with increased intensity and strongly asymmetric pulses of petawatt level
Inhyuk Nam, В. В. Кулагин, Min Sup Hur, In Won Lee, Hyyong Suk
SJR Q2Physical Review E

Generation of petawatt-class pulses with a nearly single-cycle duration or with a strongly asymmetric longitudinal profile using a thin plasma layer are investigated via particle-in-cell simulations and the analytical flying mirror model. It is shown that the transmitted pulses having a duration as short as about 4 fs (1.2 laser cycles) or one-cycle front (tail) asymmetric pulses with peak intensity of about 10^{21}W/cm^{2} can be produced by optimizing system parameters. Here, a new effect is f

Nuclear and High Energy PhysicsPhysics and Astronomy
13
Article|4 citations·2023
Optimized terahertz pulse generation with chirped pump pulses from an echelon-based tilted-pulse-front (TPF) scheme
Inhyuk Nam, Intae Eom, Minseok Kim, Myung Hoon Cho, Dogeun Jang
SJR Q1Optics ExpressOA

We successfully demonstrated the generation of single-cycle terahertz (THz) pulses through tilted-pulse-front (TPF) pumping using a reflective echelon in a lithium niobate crystal. By optimizing the pump pulse duration using a chirp, we achieved a maximum pump-to-THz conversion efficiency of 0.39%. However, we observed that the saturation behavior began at a relatively low pump energy (0.37 mJ), corresponding to a pump intensity of 22 GW/cm 2 . To elucidate this behavior, we measured the near- a

Electrical and Electronic EngineeringEngineering
14
Article|2 citations·2016
Spatial and temporal measurements of plasma/gas densities in a capillary gas-cell for laser-plasma accelerators
Inhyuk Nam, Minseok Kim, Seung-woo Lee, Dogeun Jang, Hyyong Suk
SJR Q3Journal of the Korean Physical Society

The measurement of the plasma density is of crucial importance in laser-plasma accelerators. We measured the spatial and the temporal plasma/gas densities in a capillary gas-cell by using the interferometric and the Raman scattering methods. By using transverse interferometry, we were able to measure directly the spatial distribution of the electron density between the entrance and the location of gas injection in the capillary, and we compared the result with that from a computational fluid dyn

Nuclear and High Energy PhysicsPhysics and Astronomy
15
Article|2 citations·2023
Enhancement of electron energies in the laser wakefield acceleration using a density up-ramp capillary gas-cell
Inhyuk Nam, Minseok Kim, Myung Hoon Cho, Dogeun Jang, MinSup Hur, Hyyong Suk
SJR Q2Physica ScriptaOA

Abstract In the laser wakefield acceleration (LWFA), the dephasing problem is a serious energy-limiting factor, which is caused by the velocity difference between the accelerated electrons and the laser wake wave. To overcome the dephasing problem, we developed a special capillary gas-cell with a density up-ramp along the laser propagation direction and used it for electron acceleration experiments. Our experiments, which were performed with a peak laser power of 15 TW at GIST, show that the ele

Mechanics of MaterialsEngineering

Research Areas

Nuclear and High Energy PhysicsElectrical and Electronic EngineeringRadiationGeophysicsAtomic and Molecular Physics, and OpticsMaterials Chemistry

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