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Junsuk Rho

Pohang University of Science and Technology · Materials Science

About the Lab

Professor Junsuk Rho's research lab specializes in nanophotonics, metamaterials, and topological photonics, focusing on the design and application of advanced optical materials for next-generation photonic devices. The lab pioneers data-driven approaches using deep learning to accelerate the discovery and optimization of nanophotonic structures, including metasurfaces and hyperbolic metamaterials. Key research directions include vectorial holography, structural color printing, and intelligent optical sensors for real-time chemical and biological detection. The lab also explores topological properties in photonic systems to enable robust, low-loss light manipulation.

nanophotonicsmetasurfacesdeep learningtopological photonicsoptical sensing

Research Overview

Papers
400
Total Citations
29,591
Papers (5y)
249
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
249total
2021
2022
2023
2024
2025
Citations per year (5y)
13,952total
20212022202320242025

Selected Papers

15
1
Article|1,211 citations·2018
Amino-acid- and peptide-directed synthesis of chiral plasmonic gold nanoparticles
Hye‐Eun Lee, Hyo‐Yong Ahn, Jungho Mun, Yoon Young Lee, Minkyung Kim, Nam Heon Cho, Kiseok Chang, Wook Sung Kim, Junsuk Rho, Ki Tae Nam
SJR Q1Nature
BiomaterialsMaterials Science
2
Article|542 citations·2020
Deep learning enabled inverse design in nanophotonics
Sunae So, Trevon Badloe, Jaebum Noh, Junsuk Rho, Junsuk Rho
SJR Q1NanophotonicsOA

Abstract Deep learning has become the dominant approach in artificial intelligence to solve complex data‐driven problems. Originally applied almost exclusively in computer‐science areas such as image analysis and nature language processing, deep learning has rapidly entered a wide variety of scientific fields including physics, chemistry and material science. Very recently, deep neural networks have been introduced in the field of nanophotonics as a powerful way of obtaining the nonlinear mappin

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Review|466 citations·2020
Recent advances in 2D, 3D and higher-order topological photonics
Minkyung Kim, Zubin Jacob, Junsuk Rho
SJR Q1Light Science & ApplicationsOA

Over the past decade, topology has emerged as a major branch in broad areas of physics, from atomic lattices to condensed matter. In particular, topology has received significant attention in photonics because light waves can serve as a platform to investigate nontrivial bulk and edge physics with the aid of carefully engineered photonic crystals and metamaterials. Simultaneously, photonics provides enriched physics that arises from spin-1 vectorial electromagnetic fields. Here, we review recent

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|433 citations·2010
Spherical hyperlens for two-dimensional sub-diffractional imaging at visible frequencies
Junsuk Rho, Ziliang Ye, Yi Xiong, Xiaobo Yin, Zhaowei Liu, Hyeunseok Choi, Guy Bartal, Xiang Zhang
SJR Q1Nature CommunicationsOA
Electronic, Optical and Magnetic MaterialsMaterials Science
5
Article|367 citations·2021
Pixelated bifunctional metasurface-driven dynamic vectorial holographic color prints for photonic security platform
Inki Kim, Jaehyuck Jang, Gyeongtae Kim, Jihae Lee, Trevon Badloe, Jungho Mun, Junsuk Rho
SJR Q1Nature CommunicationsOA

Vectorial holography has gained a lot of attention due to the promise of versatile polarization control of structured light for enhanced optical security and multi-channel optical communication. Here, we propose a bifunctional metasurface which combines both structural color printing and vectorial holography with eight polarization channels towards advanced encryption applications. The structural colour prints are observed under white light while the polarization encoded holograms are reconstruc

Electronic, Optical and Magnetic MaterialsMaterials Science
6
Article|310 citations·2022
Hyperbolic metamaterials: fusing artificial structures to natural 2D materials
Dasol Lee, Sunae So, Guangwei Hu, Minkyung Kim, Trevon Badloe, Hanlyun Cho, Jae‐Kyung Kim, Hongyoon Kim, Cheng‐Wei Qiu, Junsuk Rho
SJR Q1eLightOA

Abstract Optical metamaterials have presented an innovative method of manipulating light. Hyperbolic metamaterials have an extremely high anisotropy with a hyperbolic dispersion relation. They are able to support high- k modes and exhibit a high density of states which produce distinctive properties that have been exploited in various applications, such as super-resolution imaging, negative refraction, and enhanced emission control. Here, state-of-the-art hyperbolic metamaterials are reviewed, s

Electronic, Optical and Magnetic MaterialsMaterials Science
7
Article|274 citations·2018
Designing nanophotonic structures using conditional deep convolutional generative adversarial networks
Sunae So, Junsuk Rho
SJR Q1NanophotonicsOA

Abstract Data‐driven design approaches based on deep learning have been introduced in nanophotonics to reduce time‐consuming iterative simulations, which have been a major challenge. Here, we report the first use of conditional deep convolutional generative adversarial networks to design nanophotonic antennae that are not constrained to predefined shapes. For given input reflection spectra, the network generates desirable designs in the form of images; this allows suggestions of new structures t

Electronic, Optical and Magnetic MaterialsMaterials Science
8
Article|269 citations·2021
Holographic metasurface gas sensors for instantaneous visual alarms
Inki Kim, Won-Sik Kim, Kwan Kim, Muhammad Afnan Ansari, Muhammad Qasim Mehmood, Trevon Badloe, Yeseul Kim, Yeseul Kim, Junho Gwak, Heon Lee, Young‐Ki Kim, Young‐Ki Kim
SJR Q1Science AdvancesOA

The rapid detection of biological and chemical substances in real time is particularly important for public health and environmental monitoring and in the military sector. If the process of substance detection to visual reporting can be implemented into a single miniaturized sensor, there could be a profound impact on practical applications. Here, we propose a compact sensor platform that integrates liquid crystals (LCs) and holographic metasurfaces to autonomously sense the existence of a volat

Electronic, Optical and Magnetic MaterialsMaterials Science
9
Article|268 citations·2020
Single-step manufacturing of hierarchical dielectric metalens in the visible
Gwanho Yoon, Kwan Kim, Daihong Huh, Heon Lee, Junsuk Rho
SJR Q1Nature CommunicationsOA

Metalenses have shown a number of promising functionalities that are comparable with conventional refractive lenses. However, current metalenses are still far from commercialization due to the formidable fabrication costs. Here, we demonstrate a low-cost dielectric metalens that works in the visible spectrum. The material of the metalens consists of a matrix-inclusion composite in which a hierarchy satisfies two requirements for the single-step fabrication; a high refractive index and a pattern-

Electronic, Optical and Magnetic MaterialsMaterials Science
10
Article|267 citations·2019
Simultaneous Inverse Design of Materials and Structures via Deep Learning: Demonstration of Dipole Resonance Engineering Using Core–Shell Nanoparticles
Sunae So, Jungho Mun, Junsuk Rho
SJR Q1ACS Applied Materials & Interfaces

Recent introduction of data-driven approaches based on deep-learning technology has revolutionized the field of nanophotonics by allowing efficient inverse design methods. In this paper, a simultaneous inverse design of materials and structure parameters of core-shell nanoparticles is achieved for the first time using deep learning of a neural network. A neural network to learn the correlation between the extinction spectra of electric and magnetic dipoles and core-shell nanoparticle designs, wh

Electronic, Optical and Magnetic MaterialsMaterials Science
11
Article|250 citations·2022
Multicolor and 3D Holography Generated by Inverse‐Designed Single‐Cell Metasurfaces
Sunae So, Joohoon Kim, Trevon Badloe, Chihun Lee, Younghwan Yang, Hyunjung Kang, Junsuk Rho
SJR Q1Advanced Materials

Metasurface-generated holography has emerged as a promising route for fully reproducing vivid scenes by manipulating the optical properties of light using ultra-compact devices. However, achieving multiple holographic images using a single metasurface is still difficult due to the capacity limit of a single meta-atom. In this work, an inverse design method based on gradient-descent optimization is presented to encode multiple pieces of holographic information into a single metasurface. The propo

Electronic, Optical and Magnetic MaterialsMaterials Science
12
Article|242 citations·2023
Scalable manufacturing of high-index atomic layer–polymer hybrid metasurfaces for metaphotonics in the visible
Joohoon Kim, Junhwa Seong, Wonjoong Kim, Gun‐Yeal Lee, Seokwoo Kim, Hongyoon Kim, Seong‐Won Moon, Dong Kyo Oh, Younghwan Yang, Jeonghoon Park, Jaehyuck Jang, Yeseul Kim
SJR Q1Nature Materials
Electronic, Optical and Magnetic MaterialsMaterials Science
13
Article|238 citations·2022
Metasurface-driven full-space structured light for three-dimensional imaging
Gyeongtae Kim, Yeseul Kim, Jooyeong Yun, Seong‐Won Moon, Seokwoo Kim, Jae‐Kyung Kim, Junkyeong Park, Trevon Badloe, Inki Kim, Junsuk Rho
SJR Q1Nature CommunicationsOA

Structured light (SL)-based depth-sensing technology illuminates the objects with an array of dots, and backscattered light is monitored to extract three-dimensional information. Conventionally, diffractive optical elements have been used to form laser dot array, however, the field-of-view (FOV) and diffraction efficiency are limited due to their micron-scale pixel size. Here, we propose a metasurface-enhanced SL-based depth-sensing platform that scatters high-density ~10 K dot array over the 18

Electronic, Optical and Magnetic MaterialsMaterials Science
14
Review|238 citations·2021
Metasurface-Driven Optically Variable Devices
Chunghwan Jung, Gyeongtae Kim, Minsu Jeong, Jaehyuck Jang, Zhaogang Dong, Trevon Badloe, Joel K. W. Yang, Junsuk Rho
SJR Q1Chemical Reviews

Optically variable devices (OVDs) are in tremendous demand as optical indicators against the increasing threat of counterfeiting. Conventional OVDs are exposed to the danger of fraudulent replication with advances in printing technology and widespread copying methods of security features. Metasurfaces, two-dimensional arrays of subwavelength structures known as meta-atoms, have been nominated as a candidate for a new generation of OVDs as they exhibit exceptional behaviors that can provide a mor

Electronic, Optical and Magnetic MaterialsMaterials Science
15
Review|224 citations·2023
Integrated metasurfaces for re-envisioning a near-future disruptive optical platform
Younghwan Yang, Junhwa Seong, Minseok Choi, Junkyeong Park, Gyeongtae Kim, Hongyoon Kim, Junhyeon Jeong, Chunghwan Jung, Joohoon Kim, Gyoseon Jeon, Kyung-il Lee, Dong Hyun Yoon
SJR Q1Light Science & ApplicationsOA

Metasurfaces have been continuously garnering attention in both scientific and industrial fields, owing to their unprecedented wavefront manipulation capabilities using arranged subwavelength artificial structures. To date, research has mainly focused on the full control of electromagnetic characteristics, including polarization, phase, amplitude, and even frequencies. Consequently, versatile possibilities of electromagnetic wave control have been achieved, yielding practical optical components

Electronic, Optical and Magnetic MaterialsMaterials Science

Research Areas

Electronic, Optical and Magnetic MaterialsBiomedical EngineeringAtomic and Molecular Physics, and OpticsElectrical and Electronic EngineeringCivil and Structural EngineeringMaterials Chemistry

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