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Lee, Myungjae

Seoul National University · Physics and Astronomy

About the Lab

Professor Lee Myungjae's research lab specializes in nanophotonics, plasmonics, and 2D materials, focusing on the development of biocompatible, topologically protected, and tunable photonic and plasmonic devices for next-generation sensing and optoelectronic applications. The lab pioneers novel fabrication techniques—such as resist-free lithography and silk-based nanostructures—to preserve the intrinsic properties of sensitive materials like 2D semiconductors and perovskites while enabling high-performance devices. Key research directions include topological photonics, plasmonic biosensors, and room-temperature single-mode lasers using hybrid perovskite gain media.

topological photonicsplasmonic biosensors2D materialsperovskite lasersbiocompatible nanofabrication

Research Overview

Papers
32
Total Citations
581
Papers (5y)
11
Primary Field
Physics and Astronomy

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
11total
2021
2022
2024
2025
2026
Citations per year (5y)
65total
20212022202420252026

Selected Papers

15
1
Article|130 citations·2019
Lasing at topological edge states in a photonic crystal L3 nanocavity dimer array
Changhyun Han, Myungjae Lee, Ségolène Callard, Christian Seassal, Heonsu Jeon
SJR Q1Light Science & ApplicationsOA

Topological photonics have provided new insights for the manipulation of light. Analogous to electrons in topological insulators, photons travelling through the surface of a topological photonic structure or the interface of two photonic structures with different topological phases are free from backscattering caused by structural imperfections or disorder. This exotic nature of the topological edge state (TES) is truly beneficial for nanophotonic devices that suffer from structural irregulariti

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
2
Article|111 citations·2015
A Highly Tunable and Fully Biocompatible Silk Nanoplasmonic Optical Sensor
Myungjae Lee, Heonsu Jeon, Sunghwan Kim
SJR Q1Nano Letters

Novel concepts for manipulating plasmonic resonances and the biocompatibility of plasmonic devices offer great potential in versatile applications involving real-time and in vivo monitoring of analytes with high sensitivity in biomedical and biological research. Here we report a biocompatible and highly tunable plasmonic bio/chemical sensor consisting of a natural silk protein and a gold nanostructure. Our silk plasmonic absorber sensor (SPAS) takes advantage of the strong local field enhancemen

BiomaterialsMaterials Science
3
Article|58 citations·2019
Taming of random lasers
Myungjae Lee, Ségolène Callard, Christian Seassal, Heonsu Jeon
SJR Q1Nature Photonics
Acoustics and UltrasonicsPhysics and Astronomy
4
Article|58 citations·2016
Two-dimensional photonic crystal bandedge laser with hybrid perovskite thin film for optical gain
Hyungrae Cha, Seunghwan Bae, Myungjae Lee, Heonsu Jeon
SJR Q1Applied Physics Letters

We report optically pumped room temperature single mode laser that contains a thin film of hybrid perovskite, an emerging photonic material, as gain medium. Two-dimensional square lattice photonic crystal (PhC) backbone structure enables single mode laser operation via a photonic bandedge mode, while a thin film of methyl-ammonium lead iodide (CH3NH3PbI3) spin-coated atop provides optical gain for lasing. Two kinds of bandedge modes, Γ and M, are employed, and both devices laser in single mode a

Electrical and Electronic EngineeringEngineering
5
Article|54 citations·2022
Resist-Free Lithography for Monolayer Transition Metal Dichalcogenides
Preeti Poddar, Yu Zhong, Andrew J. Mannix, Fauzia Mujid, Jaehyung Yu, Ce Liang, Jong‐Hoon Kang, Myungjae Lee, Saien Xie, Jiwoong Park
SJR Q1Nano LettersOA

Photolithography and electron-beam lithography are the most common methods for making nanoscale devices from semiconductors. While these methods are robust for bulk materials, they disturb the electrical properties of two-dimensional (2D) materials, which are highly sensitive to chemicals used during lithography processes. Here, we report a resist-free lithography method, based on direct laser patterning and resist-free electrode transfer, which avoids unintentional modification to the 2D materi

Materials ChemistryMaterials Science
6
Article|35 citations·2014
Novel and simple route to fabricate fully biocompatible plasmonic mushroom arrays adhered on silk biopolymer
Joonhan Park, Yunkyoung Choi, Myungjae Lee, Heonsu Jeon, Sunghwan Kim
SJR Q1Nanoscale

A fully biocompatible plasmonic quasi-3D nanostructure is demonstrated by a simple and reliable fabrication method using strong adhesion between gold and silk fibroin. The quasi-3D nature gives rise to complex photonic responses in reflectance that are prospectively useful in bio/chemical sensing applications. Laser interference lithography is utilized to fabricate large-area plasmonic nanostructures.

BiomaterialsMaterials Science
7
Article|29 citations·2018
Anderson localizations and photonic band-tail states observed in compositionally disordered platform
Myungjae Lee, Jeongkug Lee, Sunghwan Kim, Ségolène Callard, Christian Seassal, Heonsu Jeon
SJR Q1Science AdvancesOA

Anderson localization in random structures is an intriguing physical phenomenon, for which experimental verifications are far behind theoretical predictions. We report the first experimental confirmations of photonic band-tail states and a complete transition of Anderson localization. An optically activated photonic crystal alloy platform enables the acquisition of extensive experimental data exclusively on pure eigenstates, revealing direct evidence of band-tail states and Anderson localization

Acoustics and UltrasonicsPhysics and Astronomy
8
Article|26 citations·2017
Efficient on-chip integration of a colloidal quantum dot photonic crystal band-edge laser with a coplanar waveguide
Hyunho Jung, Myungjae Lee, Changhyun Han, Yeonsang Park, Kyung‐Sang Cho, Heonsu Jeon
SJR Q1Optics ExpressOA

High-density photonic integrated circuits (PICs) are expected to replace their current electronic counterparts in the future. The most crucial prerequisite for realizing successful PICs is to develop a low-loss coupling technique between active and passive photonic components based on various nanoscale materials and devices. Here we propose and demonstrate an on-chip integration technique in which a high-refractive-index layer constitutes the coplanar structural backbone across the entire PIC ch

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|19 citations·2016
Colloidal quantum dot lasers built on a passive two-dimensional photonic crystal backbone
Hojun Chang, Kyungtaek Min, Myungjae Lee, Minsu Kang, Yeonsang Park, Kyung‐Sang Cho, Young‐Geun Roh, Sung Woo Hwang, Heonsu Jeon
SJR Q1Nanoscale

We report the room-temperature lasing action from two-dimensional photonic crystal (PC) structures composed of a passive Si3N4 backbone with an over-coat of CdSe/CdS/ZnS colloidal quantum dots (CQDs) for optical gain. When optically excited, devices lased in dual PC band-edge modes, with the modal dominance governed by the thickness of the CQD over-layer. The demonstrated laser platform should have an impact on future photonic integrated circuits as the on-chip coupling between active and passiv

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
10
Article|9 citations·2003
Combined performance of pumping and tracer tests: A case study
이진용, 김정우, 천정용, 이명재, 이강근
http://ieg.or.kr/include/file_down.php?save_path=/data1/abstract&filename=K070305.PDF&filename2=K070305.PDF

A combined pumping and tracer test was conducted at a highly fractured aquifer system. The hydrogeologic units underlying the test site are reclamation soil, weathered rock layer, and fractured layer. The fractured layer is the main aquifer for this site. Prior to pumping and tracer tests, slug tests were conducted at four test wells. The test data revealed existence of a low permeability zone near well OB-1. Generally the estimated hydraulic conductivities are in the order of 10-4 cm/sec. A pum

11
Article|9 citations·2017
Wet‐Transfer of Freestanding Dense Colloidal Quantum Dot Films and Their Photonic Device Application
Changhyun Han, Hyunho Jung, Jong‐Ho Lee, Myungjae Lee, Yeonsang Park, Kyung‐Sang Cho, Heonsu Jeon
SJR Q1Advanced Materials Technologies

Abstract A method of wet‐transferring a densely packed colloidal quantum dot (CQD) film is reported herein. Layers of poly(vinyl alcohol) (sacrificial layer) and poly(methyl methacrylate) (temporary mechanical support) are spin‐coated below and above the CQD film, respectively; the two layers are eventually removed, resulting in a single CQD film on an alien substrate. CQD films as large as 1 cm × 1 cm are transferred to any substrate, including flexible and prepatterned ones, with very little m

Materials ChemistryMaterials Science
12
Article|8 citations·2017
A Precise Image Crawling System with Image Classification Based on Deep Learning
Myungjae Lee, Suh-Yong Choi, Hyeok-June Jeong, Young-Guk Ha
Advanced Science Letters
Artificial IntelligenceComputer Science
13
Article|8 citations·2011
Radon Environment in the Korea Invisible Mass Search Experiment and Its Measurement
이명재, 방형찬, 김승천, 김선기, 이상준, Jin Li, 명성숙, 김영덕, 김홍주

The level of radioactivity from <SUP>222</SUP>Rn in the air has to be monitored to control systematic effects on the background level at the KIMS (Korea Invisible Mass Search) dark matter search experiment. We designed and constructed a radon detector using a silicon photodiode that collects ^(218)Po and ^(214)Po daughter ions electrically and detects their α decays. Results for the detector calibration with a standard radon source, as well as the dependence of the -particle detection efficiency

14
Article|7 citations·2018
Electrical modulation of a photonic crystal band-edge laser with a graphene monolayer
Hanbit Kim, Myungjae Lee, Hyunhak Jeong, Min‐Soo Hwang, Ha-Reem Kim, Seondo Park, Yun Daniel Park, Takhee Lee, Hong‐Gyu Park, Heonsu Jeon
SJR Q1Nanoscale

The electrical control of photonic crystal (PhC) lasers has been an attractive but challenging issue. Laser operation by electrical injection is of key importance for the viability and applicability of the PhC lasers. Another key factor is the electrical modulation of the laser output. The Fermi level of a graphene monolayer can be controlled by electrical gating, which adjusts its optical absorption. In this study, a graphene monolayer sheet is integrated on top of a two-dimensional PhC structu

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
15
Article|6 citations·2022
Two-Dimensional Mechanics of Atomically Thin Solids on Water
Jaehyung Yu, Ce Liang, Myungjae Lee, Soumik Das, Andrew Ye, Fauzia Mujid, Preeti Poddar, Baorui Cheng, Nicholas L. Abbott, Jiwoong Park
SJR Q1Nano LettersOA

Movement of a three-dimensional solid at an air-water interface is strongly influenced by the extrinsic interactions between the solid and the water. The finite thickness and volume of a moving solid causes capillary interactions and water-induced drag. In this Letter, we report the fabrication and dynamical imaging of freely floating MoS<sub>2</sub> solids on water, which minimizes such extrinsic effects. For this, we delaminate a synthesized wafer-scale monolayer MoS<sub>2</sub> onto a water s

Biomedical EngineeringEngineering

Research Areas

Atomic and Molecular Physics, and OpticsComputer Vision and Pattern RecognitionAcoustics and UltrasonicsBiomaterialsElectrical and Electronic EngineeringMaterials Chemistry

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