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Taehwan Kim

Pohang University of Science and Technology · 物理学・天文学

研究室紹介

Professor Taehwan Kim's research lab specializes in nanoscale electronic and electromagnetic phenomena, focusing on advanced materials for multifunctional applications. The lab investigates electron transport and defect dynamics in low-dimensional systems, including charge-density wave materials and copper nanowires, with an emphasis on understanding quantum transport mechanisms at the atomic scale. Using cutting-edge instrumentation such as low-temperature four-probe scanning tunneling microscopy and in situ electron microscopy, the lab explores phase competition, topological defects, and stress-induced transitions in correlated electron systems. Recent work also extends into applied nanosystems, such as multispectral camouflage via hierarchical metamaterials and health-monitoring technologies using force-sensing arrays.

nanoscale transportcorrelated electron systemsmetamaterialsdefect engineeringin situ electron microscopy

Research Overview

Papers
152
Total Citations
2,483
Papers (5y)
42
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)
42total
2021
2022
2023
2024
2025
Citations per year (5y)
186total
20212022202320242025

Selected Papers

15
1
Article|321 citations·2019
Hierarchical Metamaterials for Multispectral Camouflage of Infrared and Microwaves
Tae-Hwan Kim, Ji‐Yeul Bae, Namkyu Lee, Hyung Hee Cho
SJR Q1Advanced Functional Materials

Abstract Camouflage is an emerging application of metamaterials owing to their exotic electromagnetic radiative properties. Based on the use of a selective emitter and an absorber as the metamaterials, most reported articles have suggested the use of single‐band camouflage, however, multispectral camouflage is a challenging issue owing to a difference of several orders of magnitude in the unit cell structure. Herein, hierarchical metamaterials (HMMs) for multispectral signal control when dissipa

Electronic, Optical and Magnetic MaterialsMaterials Science
2
Article|160 citations·2010
Large Discrete Resistance Jump at Grain Boundary in Copper Nanowire
Tae-Hwan Kim, Xiaoguang Zhang, Don M. Nicholson, Boyd M. Evans, Nagraj Kulkarni, Balasubramaniam Radhakrishnan, Edward A. Kenik, An‐Ping Li
SJR Q1Nano Letters

Copper is the current interconnect metal of choice in integrated circuits. As interconnect dimensions decrease, the resistivity of copper increases dramatically because of electron scattering from surfaces, impurities, and grain boundaries (GBs) and threatens to stymie continued device scaling. Lacking direct measurements of individual scattering sources, understanding of the relative importance of these scattering mechanisms has largely relied on semiempirical modeling. Here we present the firs

Electronic, Optical and Magnetic MaterialsMaterials Science
3
Article|60 citations·2007
A cryogenic Quadraprobe scanning tunneling microscope system with fabrication capability for nanotransport research
Tae-Hwan Kim, Zhouhang Wang, J. F. Wendelken, Hanno H. Weitering, Wenzhi Li, An‐Ping Li
SJR Q2Review of Scientific InstrumentsOA

We describe the development and the capabilities of an advanced system for nanoscale electrical transport studies. This system consists of a low temperature four-probe scanning tunneling microscope (STM) and a high-resolution scanning electron microscope coupled to a molecular-beam epitaxy sample preparation chamber. The four STM probes can be manipulated independently with subnanometer precision, enabling atomic resolution STM imaging and four-point electrical transport study of surface electro

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|58 citations·2012
Topological Solitons versus Nonsolitonic Phase Defects in a Quasi-One-Dimensional Charge-Density Wave
Tae-Hwan Kim, Han Woong Yeom
SJR Q1Physical Review LettersOA

We investigated phase defects in a quasi-one-dimensional commensurate charge-density wave (CDW) system, an In atomic wire array on Si(111), using low temperature scanning tunneling microscopy. The unique fourfold degeneracy of the CDW state leads to various phase defects, among which intrinsic solitons are clearly distinguished. The solitons exhibit a characteristic variation of the CDW amplitude with a coherence length of about 4 nm, as expected from the electronic structure, and a localized el

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|57 citations·2017
Switching chiral solitons for algebraic operation of topological quaternary digits
Tae-Hwan Kim, Sangmo Cheon, Han Woong Yeom
SJR Q1Nature PhysicsOA
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
6
Article|47 citations·2010
Imaging and manipulation of the competing electronic phases near the Mott metal-insulator transition
Tae-Hwan Kim, Manuel Angst, Biao Hu, Rongying Jin, X.-G. Zhang, J. F. Wendelken, E. W. Plummer, An‐Ping Li
SJR Q1Proceedings of the National Academy of SciencesOA

The complex interplay between the electron and lattice degrees of freedom produces multiple nearly degenerate electronic states in correlated electron materials. The competition between these degenerate electronic states largely determines the functionalities of the system, but the invoked mechanism remains in debate. By imaging phase domains with electron microscopy and interrogating individual domains in situ via electron transport spectroscopy in double-layered Sr(3)(Ru(1-x)Mn(x))(2)O(7) (x =

Electronic, Optical and Magnetic MaterialsMaterials Science
7
Article|39 citations·2005
Development of carbon dioxide adsorbents using carbon materials prepared from coconut shell
Seok-Jin Son, Jung-Sik Choi, Ko-Yeon Choo, Sun-Dal Song, Savithri Vijayalakshmi, Tae-Hwan Kim
SJR Q2Korean Journal of Chemical Engineering
Biomedical EngineeringEngineering
8
Article|13 citations·2019
Determination of Lying Posture through Recognition of Multitier Body Parts
Tae-Hwan Kim, Soon‐Ju Kwon, Hyun‐Min Choi, Youn-Sik Hong
Wireless Communications and Mobile ComputingOA

In this paper, we propose a lying posture discrimination algorithm to monitor the behavior pattern of a person lying in bed. Using FSR (force sensing resistor) sensors arranged in a grid structure, three major body parts such as head , shoulder , and hips are identified, and six lying positions are determined based on these body parts. Head, shoulder, and hips are relatively high in pressure and are easy to distinguish due to low movement. In addition, we have effectively limited the search spac

Biomedical EngineeringEngineering
9
Article|12 citations·2022
Skin-interfaced Wearable Biosensors: A Mini-Review
Tae-Hwan Kim, Inkyu Park
SJR Q4Journal of Sensor Science and TechnologyOA
Biomedical EngineeringEngineering
10
Article|11 citations·2021
Particle-antiparticle duality and fractionalization of topological chiral solitons
Chang-geun Oh, Sang Hoon Han, Seung-Gyo Jeong, Tae-Hwan Kim, Sangmo Cheon
SJR Q1Scientific ReportsOA

Although a prototypical Su-Schrieffer-Heeger (SSH) soliton exhibits various important topological concepts including particle-antiparticle (PA) symmetry and fractional fermion charges, there have been only few advances in exploring such properties of topological solitons beyond the SSH model. Here, by considering a chirally extended double-Peierls-chain model, we demonstrate novel PA duality and fractional charge e/2 of topological chiral solitons even under the chiral symmetry breaking. This pr

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
11
Article|11 citations·2008
Probing electrical transport in individual carbon nanotubes and junctions
Tae-Hwan Kim, J. F. Wendelken, An‐Ping Li, Gaohui Du, Wenzhi Li
SJR Q2Nanotechnology

The electrical transport properties of individual carbon nanotubes (CNTs) and multi-terminal junctions of CNTs are investigated with a quadraprobe scanning tunneling microscope. The CNTs used in this study are made of stacked herringbone-type conical graphite sheets with a cone angle of ∼20° to the tube axis, and the CNT junctions have no catalytic particles in the junction areas. The CNTs have a significantly higher resistivity than conventional CNTs with concentric walls. The straight CNTs dis

Materials ChemistryMaterials Science
12
Article|7 citations·2022
Topological and trivial domain wall states in engineered atomic chains
Seung-Gyo Jeong, Tae-Hwan Kim
SJR Q1npj Quantum MaterialsOA

In a recent article 1 , Huda et al. demonstrated tuneable topological domain wall states in the c (2 × 2) chlorinated Cu(100) 2 . Their system allows to experimentally tune the domain wall states using atom manipulation by the tip of a scanning tunneling microscope (STM). They have realized topological domain wall states of two prototypical one-dimensional models such as trimer 3 and coupled dimer chains 4 , 5 , 6 , 7 , 8 . However, they did not distinguish trivial domain wall states 9 from topo

Biomedical EngineeringEngineering
13
Article|7 citations·2011
Structural Dependence of Grain Boundary Resistivity in Copper Nanowires
Tae-Hwan Kim, Don M. Nicholson, X.-G. Zhang, Boyd M. Evans, Nagraj Kulkarni, Edward A. Kenik, Harry M. Meyer, Balasubramaniam Radhakrishnan, An‐Ping Li
SJR Q3Japanese Journal of Applied Physics

We report the direct measurement of individual grain boundary (GB) resistances and the critical role of GB structure in the increased resistivity in copper nanowires. By measuring both intra- and inter-grain resistance with a four-probe scanning tunneling microscope, large resistance jumps are revealed owing to successive scattering across high-angle random GBs, while the resistance changes at twin and other coincidence boundaries are negligibly small. The impurity distributions in the nanowires

Electronic, Optical and Magnetic MaterialsMaterials Science
14
Article|7 citations·2003
Transition between two competing structures in the epitaxial Ag layer on W(110)
Tae-Hwan Kim, Byoung‐Young Choi, Yu Song, W.G. Park, Se‐Jong Kahng, Young Kuk
Physical review. B, Condensed matterOA

Two competing structures, ``ridges'' and ``troughs,'' are observed in the first epitaxial layer of Ag on the W(110) surface with a scanning tunneling microscope. The mixed tensile and compressive strain is locally relieved by ridges and troughs in the epitaxial layer. Ag atoms are mainly commensurate with the body-centered-cubic sites of the W(110) substrate, and are partly incommensurate around misfit dislocations. The energy barrier and kinetics between these two structures are sufficiently lo

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
15
Article|6 citations·2025
Two-stage continuous CO fermentation process strategy for high-titer bioethanol production using Clostridium autoethanogenum
Tae-Hwan Kim, Jang-Seob Lee, Myeong-Jun Lee, Jinwon Lee, Young‐Kee Kim, Jeong‐Geol Na, Byung‐Keun Oh
SJR Q1Bioresource Technology
Biomedical EngineeringEngineering

Research Areas

Atomic and Molecular Physics, and OpticsMaterials ChemistryElectronic, Optical and Magnetic MaterialsBiomedical EngineeringElectrical and Electronic EngineeringEconomics and Econometrics

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