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Soon-Jae Moon

Hanyang University · 材料科学

研究室紹介

Professor Soon-Jae Moon's research lab specializes in quantum oxide materials, focusing on the electronic and magnetic properties of complex oxides, particularly 5d transition metal perovskites and correlated electron systems. The lab investigates emergent quantum phenomena such as spin-orbit coupling, Kondo effects, and topological states in thin films and single crystals, using advanced epitaxial growth and spectroscopic techniques. Key research directions include the stabilization of ferroelectricity in incipient ferroelectrics, the engineering of topological semimetals, and the exploration of Kondo condensation in disordered metallic systems.

quantum oxidestopological semimetalsspin-orbit couplingKondo effectepitaxial thin films

Research Overview

Papers
14
Total Citations
85
Papers (5y)
12
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
12total
2014
2018
2022
2023
2024
Citations per year (5y)
62total
20142018202220232024

Selected Papers

14
1
Article|23 citations·2010
PLD Growth of Epitaxially-stabilized 5d Perovskite SrIrO3 Thin Films
장승엽, 문순재, 전병철, 정진석

We have investigated the details of the growth behavior of epitaxially-stabilized 5d perovskite SrIrO3 thin films deposited by using a pulsed laser deposition method. During the deposition,a marked decrease in plume size was observed, which was accompanied by the formation of Irrich conical structures on the surface of the polycrystalline SrIrO3 target. High-resolution X-ray diffraction studies revealed that films thicker than certain thickness exhibited a mixed character of a high-quality phase

2
Article|18 citations·2023
Observation of Kondo condensation in a degenerately doped silicon metal
Hyunsik Im, Dong Uk Lee, Yongcheol Jo, Jongmin Kim, Yonuk Chong, Woon Song, Hyungsang Kim, Eun Kyu Kim, Taewon Yuk, Sang-Jin Sin, Soonjae Moon, J. R. Prance
SJR Q1Nature PhysicsOA

Abstract When a magnetic moment is embedded in a metal, it captures nearby itinerant electrons to form a so-called Kondo cloud. When magnetic impurities are sufficiently dense that their individual clouds overlap with each other they are expected to form a correlated electronic ground state. This is known as Kondo condensation and can be considered a magnetic version of Bardeen–Cooper–Schrieffer pair formation. Here, we examine this phenomenon by performing electrical transport and high-precisio

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Article|15 citations·2014
Observation of ferroelectricity induced by defect dipoles in the strainfree epitaxial CaTiO3 thin film
양상모, 문순재, 김태헌, 김용수

CaTiO3 is a well-known incipient ferroelectric material that does not undergo a ferroelectric phase transition in spite of the intriguing dielectric constant behavior. Especially, unlike a prototypical incipient ferroelectric SrTiO3, the paraelectric state of CaTiO3 cannot be easily destroyed by small perturbations, including cation doping and epitaxial strain. We present that a nearly strain-free epitaxial CaTiO3 film grown at a low oxygen partial pressure exhibits polarizationevoltage hysteres

4
Article|12 citations·2022
Pressure-Dependent Structure of BaZrO3 Crystals as Determined by Raman Spectroscopy
Dong-Hyeon Gim, Yeahan Sur, Yoon Han Lee, Jeong Hyuk Lee, Soonjae Moon, Yoon Seok Oh, Kee Hoon Kim
SJR Q2MaterialsOA

The structure of dielectric perovskite BaZrO3, long known to be cubic at room temperature without any structural phase transition with variation in temperature, has been recently disputed to have different ground state structures with lower symmetries involving octahedra rotation. Pressure-dependent Raman scattering measurements can identify the hierarchy of energetically-adjacent polymorphs, helping in turn to understand its ground state structure at atmospheric pressure. Here, the Raman scatte

Materials ChemistryMaterials Science
5
Article|5 citations·2024
Infrared spectroscopy of quantum materials
Soonjae Moon, Jungseek Hwang
SJR Q2Current Applied Physics
Materials ChemistryMaterials Science
6
Article|5 citations·2014
Temperature Dependence of the Optical Response of Perovskite-type SrIrO3 Thin Film
문순재

We report on the temperature-dependent optical absorption spectra of an orthorhombic SrIrO3thin film in the energy region between 0.08 and 6 eV. The optical absorption spectra show thecharacteristic spectral features associated with spin-orbit coupling-induced effective total angularmomentum Jeff states. A Drude-like response from the electrons in the Jeff = 1/2 bands isobserved in the energy region below about 0.5 eV followed by an interband transition from the Jeff= 3/2 to the Jeff = 1/2 bands

7
Article|5 citations·2023
Optical Transitions of a Single Nodal Ring in SrAs3: Radially and Axially Resolved Characterization
Jiwon Jeon, Jiho Jang, Hoil Kim, Taesu Park, Dongwook Kim, Soonjae Moon, Jun Sung Kim, Ji Hoon Shim, Hongki Min, Eunjip Choi
SJR Q1Physical Review Letters

${\mathrm{SrAs}}_{3}$ is a unique nodal-line semimetal that contains only a single nodal ring in the Brillouin zone, uninterrupted by any trivial bands near the Fermi energy. We performed axis-resolved optical reflection measurements on ${\mathrm{SrAs}}_{3}$ and observed that the optical conductivity exhibits flat absorption up to 129 meV in both the radial and axial directions, confirming the robustness of the universal power-law behavior of the nodal ring. The axis-resolved optical conductivit

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|2 citations·2014
Effect of Deposition Temperature on the Formation of Defect Phases in BiFeO3 Thin Films
전병철, 채승철, 강태동, 문순재

We report the effects of deposition temperature on the evolution of defect and second phasesand on the ferroelectric properties of BiFeO3 thin films. We grew BiFeO3 thin films on (001)SrTiO3 substrates by using pulsed laser deposition at temperatures in the range of 570 − 600 Cat intervals of 10 C. We found that defects and a resulting second phase appeared at temperaturesgreater than 590 C. The second phase led to significant changes in the optical absorption and to theappearance of impurity pe

9
Article|0 citations·2014
Infrared probe of the pseudogap in the BaFe _2 As _2 high- T_c superconductors
Soonjae Moon
Bulletin of the American Physical Society
Electronic, Optical and Magnetic MaterialsMaterials Science
10
Article|0 citations·2014
Strain Dependence of the Electronic Properties of LaTiO3 Thin Films
문순재, Y. S. Kim

We report on the transport and the core-level X-ray photoemission spectroscopy data of fullystrainedLaTiO3 thin films grown on GdScO3 and SrTiO3 substrates. We observed that LaTiO3thin film grown on GdScO3 showed insulating behavior but that grown on SrTiO3 exhibited ametallic character. We found that while the La 4d photoemission spectra of the two films werenearly the same, their Ti 2p and O 1s data revealed a difference. Our results suggest that straininducedchanges in the Ti-O bonding play a

11
Preprint|0 citations·2023
Interaction of in-plane Drude carrier with c-axis phonon inPdCoO2
Eunjip Choi, Dongmin Seo, Gihyeon Ahn, Gaurab Rimal, Seunghyun Khim, Suk Bum Chung, A. P. Mackenzie, Seongshik Oh, Soonjae Moon
Research SquareOA

Abstract We performed polarized reflection and transmission measurements on the layered conducting oxide PdCoO 2 thin films. For the ab-plane, an optical peak near Ω ≈ 750 cm−1 drives the scattering rate γ ∗ (ω) and effective mass m ∗ (ω) of the Drude carrier to increase and decrease respectively for ω ≧ Ω. For the c-axis, a longitudinal optical phonon (LO) is present at Ω as evidenced by a peak in the loss function Im[−1/ε c (ω)]. Further polarized measurements in different light propagation (q

Electrical and Electronic EngineeringEngineering
12
Article|0 citations·2018
Phonon Renormalization by Dzyaloshinskii-Moriya Interactions in 5 d Pyrochlore Iridate Y 2 Ir 2 O 7
Jaeseok Son, Byungcheol Park, Choong H. Kim, Hwanbeom Cho, So Yeun Kim, Luke J. Sandilands, Je-Guen Park, Soonjae Moon, Tae Won Noh
Bulletin of the American Physical Society
Materials ChemistryMaterials Science
13
Article|0 citations·2011
Infrared probe of rare-earth orthoferrite materials
A. D. LaForge, Soonjae Moon, Dimitri Basov, A. P. Ramirez, Z. Schlesinger
APS
Mechanical EngineeringEngineering
14
Preprint|0 citations·2023
Optical transitions of a single nodal ring in SrAs _3 : radially and axially resolved characterization
Jiwon Jeon, Jiho Jang, Hoil Kim, Taesu Park, Dongwook Kim, Soonjae Moon, Jun Sung Kim, Ji Hoon Shim, Hongki Min, Eunjip Choi
PubMedOA

SrAs_{3} is a unique nodal-line semimetal that contains only a single nodal ring in the Brillouin zone, uninterrupted by any trivial bands near the Fermi energy. We performed axis-resolved optical reflection measurements on SrAs_{3} and observed that the optical conductivity exhibits flat absorption up to 129 meV in both the radial and axial directions, confirming the robustness of the universal power-law behavior of the nodal ring. The axis-resolved optical conductivity, in combination with the

Atomic and Molecular Physics, and OpticsPhysics and Astronomy

Research Areas

Atomic and Molecular Physics, and OpticsMaterials ChemistryElectrical and Electronic EngineeringMechanical EngineeringElectronic, Optical and Magnetic Materials

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