Jonghwa Shin

Jonghwa Shin

KAIST

H-index: 34

Asia-South Korea

About Jonghwa Shin

Jonghwa Shin, With an exceptional h-index of 34 and a recent h-index of 24 (since 2020), a distinguished researcher at KAIST, specializes in the field of Metamaterial, Plasmonics, Nanophotonics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Spontaneous emission decay and excitation in photonic temporal crystals

Color arrestor pixels for high-fidelity, high-sensitivity imaging sensors

Spectral and angular emission control based temperature sensitive radiative cooling device

Realization of all two-dimensional Bravais lattices with metasurface-based interference lithography

Optical measurement device with universal metasurface and optical measuring method using the same

Model-Agnostic Shift-Equivariant Downsampling

Visual and thermal camouflage on different terrestrial environments based on electrochromism

Phase shift device including metal-dielectric composite structure

Jonghwa Shin Information

University

Position

Department of Materials Science and Engineering

Citations(all)

3775

Citations(since 2020)

1844

Cited By

2734

hIndex(all)

34

hIndex(since 2020)

24

i10Index(all)

57

i10Index(since 2020)

48

Email

University Profile Page

Google Scholar

Jonghwa Shin Skills & Research Interests

Metamaterial

Plasmonics

Nanophotonics

Top articles of Jonghwa Shin

Spontaneous emission decay and excitation in photonic temporal crystals

arXiv preprint arXiv:2404.13287

2024/4/20

Color arrestor pixels for high-fidelity, high-sensitivity imaging sensors

Nanophotonics

2024/4/15

Joonkyo Jung
Joonkyo Jung

H-Index: 1

Jonghwa Shin
Jonghwa Shin

H-Index: 21

Spectral and angular emission control based temperature sensitive radiative cooling device

2024/1/16

Realization of all two-dimensional Bravais lattices with metasurface-based interference lithography

Nanophotonics

2024/1/15

Nayoung Kim
Nayoung Kim

H-Index: 4

Jonghwa Shin
Jonghwa Shin

H-Index: 21

Optical measurement device with universal metasurface and optical measuring method using the same

2023/11/30

Model-Agnostic Shift-Equivariant Downsampling

2023/10/13

Arthur Baucour
Arthur Baucour

H-Index: 1

Jonghwa Shin
Jonghwa Shin

H-Index: 21

Visual and thermal camouflage on different terrestrial environments based on electrochromism

Nanophotonics

2023/7/20

Phase shift device including metal-dielectric composite structure

2023/7/4

Highly angle-sensitive and efficient optical metasurfaces with broken mirror symmetry

Nanophotonics

2023/6/27

Three-dimensionally reconfigurable focusing of laser by mechanically tunable metalens doublet with built-in holograms for alignment

Nanophotonics

2023/4/25

Joonkyo Jung
Joonkyo Jung

H-Index: 1

Jonghwa Shin
Jonghwa Shin

H-Index: 21

Electrically-driven-dynamics of real-space optical vortex based on high-dimensional topological criticality

2023/3/17

Daylong sub‐ambient radiative cooling with full‐color exterior based on thermal radiation and solar decoupling

Advanced Optical Materials

2023/3

Customizing Radiative Decay Dynamics of Two-Dimensional Excitons via Position-and Polarization-Dependent Vacuum-Field Interference

Nano Letters

2023/2/28

Light absorption structure and light sensing device having the same

2022/12/1

Comment on" Amplified emission and lasing in photonic time crystals"

arXiv preprint arXiv:2211.14832

2022/11/27

Spontaneous generation and active manipulation of real-space optical vortices

Nature

2022/11/3

Universal metasurfaces for complete linear control of coherent light transmission

Advanced Materials

2022/11

Concurrent inverse design of structured light and metasurface for nanopatterning process

2022/10/17

Nayoung Kim
Nayoung Kim

H-Index: 4

Jonghwa Shin
Jonghwa Shin

H-Index: 21

Publisher Correction: Nanoscale physical unclonable function labels based on block copolymer self-assembly (Nature Electronics,(2022), 5, 7,(433-442), 10.1038/s41928-022-00788-w)

Nature Electronics

2022/8

Ultrawide meta-film replication process for the mass production of a flexible microwave absorbing meta-surface

Optics Express

2022/8/1

See List of Professors in Jonghwa Shin University(KAIST)