Sun-Je Kim

Sun-Je Kim

Myongji University

H-index: 15

Asia-South Korea

About Sun-Je Kim

Sun-Je Kim, With an exceptional h-index of 15 and a recent h-index of 14 (since 2020), a distinguished researcher at Myongji University, specializes in the field of Active Metasurfaces, Plasmonics, Flat optics, Metamaterials, Imaging Systems.

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

Aberration Theory of a Flat, Aplanatic Metalens Doublet and the Design of a Meta-Microscope Objective Lens

Engineering angle selectivity of extraordinary optical transmission and nonlocal spatial filtering,

Design of Dynamically Focus-switchable Fresnel Zone Plates Based on Plasmonic Phase-change VO2 Metafilm Absorbers

Polarization-independent VO2 metagrating for broadband optical transmittance modulation

Design of highly perceptible dual-resonance all-dielectric metasurface colorimetric sensor via deep nerual networks

Dielectric Metalens: Properties and Three-Dimensional Imaging Applications

Broadband Phase-change Metagrating Design for Efficient Active Reflection Steering

High‐Speed Transmission Control in Gate‐Tunable Metasurfaces Using Hybrid Plasmonic Waveguide Mode

Sun-Je Kim Information

University

Position

Department of Physics

Citations(all)

858

Citations(since 2020)

702

Cited By

435

hIndex(all)

15

hIndex(since 2020)

14

i10Index(all)

16

i10Index(since 2020)

16

Email

University Profile Page

Google Scholar

Sun-Je Kim Skills & Research Interests

Active Metasurfaces

Plasmonics

Flat optics

Metamaterials

Imaging Systems

Top articles of Sun-Je Kim

Aberration Theory of a Flat, Aplanatic Metalens Doublet and the Design of a Meta-Microscope Objective Lens

Sensors

2023/11/19

Jinsoo Jeong
Jinsoo Jeong

H-Index: 9

Sun-Je Kim
Sun-Je Kim

H-Index: 11

Engineering angle selectivity of extraordinary optical transmission and nonlocal spatial filtering,

Journal of the Optical Society of America B

2023/9

Sun-Je Kim
Sun-Je Kim

H-Index: 11

Design of Dynamically Focus-switchable Fresnel Zone Plates Based on Plasmonic Phase-change VO2 Metafilm Absorbers

Current Optics and Photonics

2023/6/25

Polarization-independent VO2 metagrating for broadband optical transmittance modulation

2023/3/15

Sun-Je Kim
Sun-Je Kim

H-Index: 11

Byoungho Lee
Byoungho Lee

H-Index: 39

Design of highly perceptible dual-resonance all-dielectric metasurface colorimetric sensor via deep nerual networks

Scientific Reports

2022/5/20

Dielectric Metalens: Properties and Three-Dimensional Imaging Applications

2021/7/4

Broadband Phase-change Metagrating Design for Efficient Active Reflection Steering

Current Optics and Photonics

2021/4/25

Sun-Je Kim
Sun-Je Kim

H-Index: 11

High‐Speed Transmission Control in Gate‐Tunable Metasurfaces Using Hybrid Plasmonic Waveguide Mode

Advanced Optical Materials

2020/11

Active near-unity absorption resonances in phase-transition material based all-dielectric nanogratings

2020/9/14

Sun-Je Kim
Sun-Je Kim

H-Index: 11

Byoungho Lee
Byoungho Lee

H-Index: 39

Full color angular filtering of visible transmission in tapered plasmonic metamaterial

Plasmonics

2020/8/25

Sun-Je Kim
Sun-Je Kim

H-Index: 11

Byoungho Lee
Byoungho Lee

H-Index: 39

Full-color-tunable nanophotonic device using electrochromic tungsten trioxide thin film

Nano Letters

2020/6/30

Dynamic phase-change metafilm absorber for strong designer modulation of visible light

Nanophotonics

2021/1/1

Doublet metalens design for high numerical aperture and simultaneous correction of chromatic and monochromatic aberrations

Optics Express

2020/6/8

Reconfigurable all-dielectric Fano metasurfaces for strong full-space intensity modulation of visible light

Nanoscale horizons

2020

See List of Professors in Sun-Je Kim University(Myongji University)

Co-Authors

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