Min Sup Hur
2000: Ph.D from Electrical Engineering (Physics Major) of POSTECH
1998: M.S. from physics of POSTECH
1996: B.S. from physics of SNU
2012 - present: Professor at physics department of UNIST
2008 - 2012: Assistant professor at electrical engineering of UNIST
2004 - 2008: Senior researcher at KERI
2001 - 2004: Post-doc. researcher at UC Berkeley, LBNL
American Physical Society
Korean Physical Society
SPIE
Conference chair of SPIE optics and optoelectronics
Computational Plasma Lab
We study fundamental plasma physics by virtual experiment. The most recent research interest is the coherent radiation emission from a laser-driven plasma. We have developed a very unique idea of generating plasma dipole oscillations (PDO) using laser pulses, aiming to utilize it as a radiation source in terahertz regime. We also discovered that the PDO can be a strong candidate model of numerous cosmic radio bursts. Motivated by the similarity between our PDO idea and the characteristics of cosmic radio bursts, we are driving our research toward the lab-astrophysics and lab space physics, where we want to find a deep physical link between seemingly irrelevant phenomena.
The general laser-plasma physics is in the scope of our research. Until very recently, we had produced many interesting results in laser-driven particle accelerator and advanced scheme of laser amplification using Raman backscatter in plasmas. A unique theory has been developed to explain the radiation reaction, which is an unsolved general physical issue in classical and quantum electrodynamics.
Another major, and relatively new (to us) subject is the divertor physics in the magnetically confined nuclear fusion device, i.e. the Tokamak. From international collaboration, we have produced a stimulating design concept for the divertor to reduce the undesirable heat flux dramatically.
We study fundamental plasma physics by virtual experiment. The most recent research interest is the coherent radiation emission from a laser-driven plasma. We have developed a very unique idea of generating plasma dipole oscillations (PDO) using laser pulses, aiming to utilize it as a radiation source in terahertz regime. We also discovered that the PDO can be a strong candidate model of numerous cosmic radio bursts. Motivated by the similarity between our PDO idea and the characteristics of cosmic radio bursts, we are driving our research toward the lab-astrophysics and lab space physics, where we want to find a deep physical link between seemingly irrelevant phenomena.
The general laser-plasma physics is in the scope of our research. Until very recently, we had produced many interesting results in laser-driven particle accelerator and advanced scheme of laser amplification using Raman backscatter in plasmas. A unique theory has been developed to explain the radiation reaction, which is an unsolved general physical issue in classical and quantum electrodynamics.
Another major, and relatively new (to us) subject is the divertor physics in the magnetically confined nuclear fusion device, i.e. the Tokamak. From international collaboration, we have produced a stimulating design concept for the divertor to reduce the undesirable heat flux dramatically.
laser-plasma physics, astro and space plasma physics, nuclear fusion
laser-plasma physics, astro and space plasma physics, nuclear fusion
laser-plasma, coherent emission from plasma, plasma dipole oscillation, laser wakefield particle acceleration, shock ion acceleration from laser-plasma interactions, target-normal-sheath ion acceleration in laser-plasma interaction, nuclear fusion, divertor physics, particle-in-cell model, fluid model of plasmas
laser-plasma, coherent emission from plasma, plasma dipole oscillation, laser wakefield particle acceleration, shock ion acceleration from laser-plasma interactions, target-normal-sheath ion acceleration in laser-plasma interaction, nuclear fusion, divertor physics, particle-in-cell model, fluid model of plasmas
국가과학기술표준분류
NB. 물리학 > NB04. 유체·플라즈마 > NB0401. 플라즈마 물리
Plasma Sources Science and Technology, Reconstruction of plasma density profiles by measuring spectra of radiation emitted from oscillating plasma dipoles, S Kylychbekov, HS Song, KB Kwon, O Ra, ES Yoon, Moses Chung, K Yu, SR Yoffe, B Ersfeld, DA Jaroszynski, Min Sup Hur*, (2020).
Science Advances, A laser-plasma accelerator driven by two-color relativistic femtosecond laser pulses, Song Li, Guangyu Li, Quratul Ain, Min Sup Hur*, Antonio C Ting, Victor V Kulagin, Christos Kamperidis, Nasr AM Hafz**, (2019).
Scientific Reports, High-energy, short-duration bursts of coherent terahertz radiation from an embedded plasma dipole, Kyu Been Kwon, Teyoun Kang, Hyung Seon Song, Young-Kuk Kim, Bernhard Ersfeld, Dino A Jaroszynski*, Min Sup Hur**, (2018).