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Kim, Sang-Koog

Seoul National University · 物理学・天文学

研究室紹介

Professor Kim, Sang-Koog's research lab specializes in spintronics and nanomagnetic dynamics, focusing on the fundamental and applied aspects of magnetization dynamics in patterned magnetic nanostructures. The lab investigates vortex core switching, spin wave manipulation, and magnonic crystals for low-power information processing, with an emphasis on controlling magnetic states using spin-polarized currents and high-frequency fields. Their work bridges micromagnetic simulations with advanced experimental techniques such as time-resolved X-ray microscopy and magnetic circular dichroism with standing waves.

spin vortex dynamicsmagnonic crystalsspin wave filteringvortex core switchinginterface magnetism

Research Overview

Papers
304
Total Citations
6,219
Papers (5y)
38
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)
38total
2022
2023
2024
2025
2026
Citations per year (5y)
378total
20222023202420252026

Selected Papers

15
1
Article|178 citations·2008
Reliable low-power control of ultrafast vortex-core switching with the selectivity in an array of vortex states by in-plane circular-rotational magnetic fields and spin-polarized currents
Sang‐Koog Kim, Ki‐Suk Lee, Young‐Sang Yu, Youn-Seok Choi
SJR Q1Applied Physics Letters

The authors investigated the technological utility of counterclockwise (CCW) and clockwise (CW) circular-rotating fields (HCCW and HCW) and spin-polarized currents with an angular frequency ωH close to the vortex eigenfrequency ωD, for the reliable, low-power, and selective switching of the bistate magnetization (M) orientations of a vortex core (VC) in an array of soft magnetic nanoelements. CCW and CW circular gyrotropic motions in response to HCCW and HCW, respectively, show remarkably contra

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
2
Article|177 citations·2009
A gigahertz-range spin-wave filter composed of width-modulated nanostrip magnonic-crystal waveguides
Sang‐Koog Kim, Ki‐Suk Lee, Dong‐Soo Han
SJR Q1Applied Physics Letters

We found a robust magnonic-crystal waveguide structure for use as an efficient gigahertz-range spin-wave filter that passes only spin waves of chosen narrow band frequencies and filters out the other frequencies. The structure consists of the serial combinations of various width modulations with different periodicities and motifs in planar-patterned thin-film nanostrips composed of a single soft magnetic material. The observed magnonic band gaps result from both the translation symmetry of the o

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Article|145 citations·2010
Micromagnetic computer simulations of spin waves in nanometre-scale patterned magnetic elements
Sang‐Koog Kim
SJR Q1Journal of Physics D Applied Physics

Current needs for further advances in the nanotechnologies of information-storage and -processing devices have attracted a great deal of interest in spin (magnetization) dynamics in nanometre-scale patterned magnetic elements. For instance, the unique dynamic characteristics of non-uniform magnetic microstructures such as various types of domain walls, magnetic vortices and antivortices, as well as spin wave dynamics in laterally restricted thin-film geometries, have been at the centre of extens

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|105 citations·2007
Electric-current-driven vortex-core reversal in soft magnetic nanodots
Sang‐Koog Kim, Youn-Seok Choi, Ki‐Suk Lee, K. Y. Guslienko, Dae-Eun Jeong
SJR Q1Applied Physics Letters

The authors report on electric-current-driven vortex-core (VC) reversal (switching) and the accompanying spin-wave emission, driven by spin-polarized ac currents of different amplitudes and frequencies, investigated by micromagnetic calculations of the dynamic evolution of a magnetic vortex in Permalloy nanodots. The magnetization orientation of the VC is effectively switchable between its upward and downward bistates and controllable by applying current above its threshold density, but with suf

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|103 citations·2012
Logic Operations Based on Magnetic-Vortex-State Networks
Hyunsung Jung, Youn-Seok Choi, Ki‐Suk Lee, Dong‐Soo Han, Young‐Sang Yu, Mi‐Young Im, Peter Fischer, Sang‐Koog Kim
SJR Q1ACS NanoOA

Logic operations based on coupled magnetic vortices were experimentally demonstrated. We utilized a simple chain structure consisting of three physically separated but dipolar-coupled vortex-state Permalloy disks as well as two electrodes for application of the logical inputs. We directly monitored the vortex gyrations in the middle disk, as the logical output, by time-resolved full-field soft X-ray microscopy measurements. By manipulating the relative polarization configurations of both end dis

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
6
Article|92 citations·2001
Modified Magnetism at a BuriedCo/PdInterface Resolved with X-Ray Standing Waves
Sang‐Koog Kim, J. B. Kortright
SJR Q1Physical Review Letters

Soft x-ray standing waves produced by a multilayer interference substrate add depth sensitivity to magnetic circular dichroism to resolve changes in Co magnetism across a 1 nm distance from the Co center to the Co-on-Pd interface of a Pd/Co/Pd trilayer with an in-plane magnetization. Large enhancements of the number of Co d holes, and of in-plane orbital and spin magnetic moments, are strongly localized at a thin, chemically modified interface layer. These results provide new insight into magnet

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
7
Article|67 citations·2021
Ultra-high rate of temperature increment from superparamagnetic nanoparticles for highly efficient hyperthermia
Jae‐Hyeok Lee, Bosung Kim, Yongsub Kim, Sang‐Koog Kim
SJR Q1Scientific ReportsOA

Abstract The magneto-thermal effect, which represents the conversion of magnetostatic energy to heat from magnetic materials, has been spotlighted for potential therapeutic usage in hyperthermia treatments. However, the realization of its potential has been challenged owing to the limited heating from the magnetic nanoparticles. Here, we explored a new-concept of magneto-thermal modality marked by low-power-driven, fast resonant spin-excitation followed by consequent energy dissipation, which co

Biomedical EngineeringEngineering
8
Article|62 citations·2017
Robust magnon-photon coupling in a planar-geometry hybrid of inverted split-ring resonator and YIG film
Biswanath Bhoi, Bo Sung Kim, Junhoe Kim, Youngjun Cho, Sang‐Koog Kim
SJR Q1Scientific ReportsOA

Abstract We experimentally demonstrate strongly enhanced coupling between excited magnons in an Yttrium Iron Garnet (YIG) film and microwave photons in an inverted pattern of split-ring resonator (noted as ISRR). The anti-crossing effects of the ISRR’s photon mode and the YIG’s magnon modes were found from |S 21 |-versus-frequency measurements for different strengths and directions of externally applied magnetic fields. The spin-number-normalized coupling strength (i.e. single spin-photon coupli

Electrical and Electronic EngineeringEngineering
9
Article|55 citations·2015
Structural and magnetic properties of Co-doped Gd2O3 nanorods
S. Patel, Prasanta Dhak, Min-Kwan Kim, Jae‐Hyeok Lee, Miyoung Kim, Sang‐Koog Kim
SJR Q2Journal of Magnetism and Magnetic Materials
Materials ChemistryMaterials Science
10
Book Chapter|48 citations·2019
Photon-magnon coupling: Historical perspective, status, and future directions
Biswanath Bhoi, Sang‐Koog Kim
Solid state physics
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
11
Article|45 citations·2008
Negative refraction of dipole-exchange spin waves through a magnetic twin interface in restricted geometry
Sang‐Koog Kim, Sangkook Choi, Ki‐Suk Lee, Dong‐Soo Han, Dae-Eun Jung, Youn-Seok Choi
SJR Q1Applied Physics LettersOA

A phenomenon of negative refraction of dipole-exchange spin waves (DESWs) was demonstrated by micromagnetic modeling, based on the fact that the DESWs’ dispersion is anisotropic according to the relative orientation of the DESW propagation direction with respect to the orientation of local static magnetizations. Using this anisotropic dispersion behavior, the negative refraction of the DESWs was reproduced through a magnetic twin interface in a geometrically restricted medium of cubic in-plane a

Electronic, Optical and Magnetic MaterialsMaterials Science
12
Article|45 citations·2020
Wireless Control of Two- and Three-Dimensional Actuations of Kirigami Patterns Composed of Magnetic-Particles–Polymer Composites
Trivoramai Jiralerspong, Geonhee Bae, Jae‐Hyeok Lee, Sang‐Koog Kim
SJR Q1ACS Nano

We demonstrate wireless remote control of two-dimensional (2D) and three-dimensional (3D) shape transformations of specially designed kirigami patterns by application of static magnetic fields. The kirigami patterns consist of hinge-linked periodic unit blocks composed of magnetic-particle-elastomer composites. By designing the axis of magnetic anisotropy in each unit block and determining the placement of the hinges that link the individual unit blocks, 2D and 3D transformations of the patterns

Mechanical EngineeringEngineering
13
Article|43 citations·2017
Single-crystalline Gd-doped BiFeO3 nanowires: R3c-to-Pn21a phase transition and enhancement in high-coercivity ferromagnetism
S. Patel, Jae‐Hyeok Lee, Min-Kwan Kim, Biswanath Bhoi, Sang‐Koog Kim
SJR Q1Journal of Materials Chemistry C

Enhancement in high-coercivity ferromagnetism of hydrothermally synthesized single-crystalline Gd-doped BiFeO<sub>3</sub> nanowires.

Electronic, Optical and Magnetic MaterialsMaterials Science
14
Article|41 citations·2003
Voltage control of a magnetization easy axis in piezoelectric/ferromagnetic hybrid films
Sang‐Koog Kim, Jeong‐Won Lee, Sung‐Chul Shin, Han Wook Song, Chang Ho Lee, Kwangsoo No
SJR Q2Journal of Magnetism and Magnetic Materials
Electronic, Optical and Magnetic MaterialsMaterials Science
15
Article|41 citations·2018
Stress-induced magnetic properties of PLD-grown high-quality ultrathin YIG films
Biswanath Bhoi, Bosung Kim, Yongsub Kim, Min-Kwan Kim, Jae‐Hyeok Lee, Sang‐Koog Kim
SJR Q2Journal of Applied Physics

Yttrium iron garnet (YIG:Y3Fe5O12) thin films were grown on (111) gadolinium gallium garnet (Gd3Ga5O12, GGG) substrates using pulsed-laser deposition under several different deposition and annealing conditions. X-ray diffraction measurements revealed that the crystallographical orientation of the YIG films is pseudomorphic to and the same as that of the GGG substrate, with a slight rhombohedral distortion along the surface normal. Furthermore, X-ray reciprocal space mapping evidenced that in-sit

Electrical and Electronic EngineeringEngineering

Research Areas

Atomic and Molecular Physics, and OpticsBiomedical EngineeringElectronic, Optical and Magnetic MaterialsElectrical and Electronic EngineeringMaterials ChemistryComputer Networks and Communications

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