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Dive into the research topics where Jinwoong Hwang is active.

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Featured researches published by Jinwoong Hwang.


Nano Letters | 2017

Temperature-Dependent Electron–Electron Interaction in Graphene on SrTiO3

Hyejin Ryu; Jinwoong Hwang; Debin Wang; Ankit Disa; Jonathan D. Denlinger; Yuegang Zhang; Sung-Kwan Mo; Choongyu Hwang; Alessandra Lanzara

The electron band structure of graphene on SrTiO3 substrate has been investigated as a function of temperature. The high-resolution angle-resolved photoemission study reveals that the spectral width at Fermi energy and the Fermi velocity of graphene on SrTiO3 are comparable to those of graphene on a BN substrate. Near the charge neutrality, the energy-momentum dispersion of graphene exhibits a strong deviation from the well-known linearity, which is magnified as temperature decreases. Such modification resembles the characteristics of enhanced electron-electron interaction. Our results not only suggest that SrTiO3 can be a plausible candidate as a substrate material for applications in graphene-based electronics but also provide a possible route toward the realization of a new type of strongly correlated electron phases in the prototypical two-dimensional system via the manipulation of temperature and a proper choice of dielectric substrates.


Nano Letters | 2018

Emergence of Kondo Resonance in Graphene Intercalated with Cerium

Jinwoong Hwang; Kyoo Kim; Hyejin Ryu; Jingul Kim; Ji Eun Lee; Sooran Kim; Minhee Kang; Byeong-Gyu Park; Alessandra Lanzara; Jinwook Chung; Sung-Kwan Mo; Jonathan D. Denlinger; B. I. Min; Choongyu Hwang

The interaction between a magnetic impurity, such as cerium (Ce) atom, and surrounding electrons has been one of the core problems in understanding many-body interaction in solid and its relation to magnetism. Kondo effect, the formation of a new resonant ground state with quenched magnetic moment, provides a general framework to describe many-body interaction in the presence of magnetic impurity. In this Letter, a combined study of angle-resolved photoemission (ARPES) and dynamic mean-field theory (DMFT) on Ce-intercalated graphene shows that Ce-induced localized states near Fermi energy, EF, hybridized with the graphene π-band, exhibit gradual increase in spectral weight upon decreasing temperature. The observed temperature dependence follows the expectations from the Kondo picture in the weak coupling limit. Our results provide a novel insight how Kondo physics emerges in the sea of two-dimensional Dirac electrons.


Applied Surface Science | 2019

Concomitant enhancement of electron-phonon coupling and electron-electron interaction in graphene decorated with ytterbium

Minhee Kang; Jinwoong Hwang; Ji Eun Lee; A. V. Fedorov; Choongyu Hwang

Abstract The interplay between electron-electron interaction and electron-phonon coupling has been one of the key issues in graphene as it can provide information on the origin of enhanced electron-phonon coupling in graphene by foreign atoms. In ytterbium-decorated graphene on SiC substrate, electron-phonon coupling exhibits strong enhancement compared to that of as-grown graphene. Based on angle-resolved photoemission study, the presence of ytterbium is also found to result in the decrease of Fermi velocity, revealing the enhancement of electron-electron interaction within the Fermi liquid theory. Our finding on the concomitant enhancement of electron-electron interaction and electron-phonon coupling suggests a possibility of the interplay between the two representative many-body interactions in graphene decorated with foreign atoms.


Applied Physics Letters | 2017

Temperature-modulated electronic structure of graphene on SiC: Possible roles of electron-electron interaction and strain

Choongyu Hwang; Jinwoong Hwang; Ji Eun Lee; Jonathan D. Denlinger; Sung-Kwan Mo

We have investigated the electron band structure of graphene epitaxially grown on an SiC substrate using angle-resolved photoemission spectroscopy. The conical energy spectrum of graphene exhibits a minimum slope at ∼50 K, which is accompanied by the minimum separation between its two branches. These observations provide a viable route towards the engineering of the electronic properties of graphene using temperature, while the latter suggests a possible evidence of gap engineering via strain induced by the substrate and modulated by temperature.


Physical Review B | 2010

Soft x-ray absorption and photoemission spectroscopy study of superoxide KO2

J.-S. Kang; Dokyoung Kim; Jinwoong Hwang; J. Baik; H. J. Shin; Minjae Kim; Y. H. Jeong; B. I. Min


Nanoscale | 2017

Hole doping, hybridization gaps, and electronic correlation in graphene on a platinum substrate

Jinwoong Hwang; Hwihyeon Hwang; Min-Jeong Kim; Hyejin Ryu; Ji Eun Lee; Qin Zhou; Sung-Kwan Mo; Jaekwang Lee; Alessandra Lanzara; Choongyu Hwang


Journal of the Korean Physical Society | 2016

The hybridizations of cobalt 3d bands with the electron band structure of the graphene/cobalt interface on a tungsten substrate

Jinwoong Hwang; Choongyu Hwang; Nak-Kwan Chung; A. D. N’Diaye; Andreas K. Schmid; Jonathan D. Denlinger


arXiv: Materials Science | 2018

Gapped Nearly Free-Standing Graphene on an SiC(0001) Substrate Induced by Manganese Atoms.

Jinwoong Hwang; Ji Eun Lee; Minhee Kang; Byeong-Gyu Park; Jonathan D. Denlinger; Sung-Kwan Mo; Choongyu Hwang


Bulletin of the American Physical Society | 2018

The electronic properties of graphene on SrTiO 3 and Pt substrates

Jinwoong Hwang; Hyejin Ryu; Hwihyeon Hwang; Min-Jeong Kim; Ji Eun Lee; Qin Zhou; Debin Wang; Ankit Disa; Jonathan D. Denlinger; Yuegang Zhang; Alessandra Lanzara; Sung-Kwan Mo; Choongyu Hwang


Bulletin of the American Physical Society | 2017

The modulation of electron-electron interactions in graphene via temperature.

Choongyu Hwang; Jinwoong Hwang; Hyejin Ryu; Sung-Kwan Mo; Jonathan D. Denlinger; Debin Wang; Yuegang Zhang; Alessandra Lanzara

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Choongyu Hwang

Pusan National University

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Jonathan D. Denlinger

Lawrence Berkeley National Laboratory

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Sung-Kwan Mo

Lawrence Berkeley National Laboratory

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Ji Eun Lee

Pusan National University

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Alessandra Lanzara

Lawrence Berkeley National Laboratory

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B. I. Min

Pohang University of Science and Technology

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Minhee Kang

Pusan National University

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Debin Wang

Lawrence Berkeley National Laboratory

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Hyejin Ryu

Seoul National University

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