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Hansuek Lee

Korea Advanced Institute of Science and Technology · Physics and Astronomy

About the Lab

Professor Hansuek Lee's research lab specializes in integrated photonics, focusing on the development of ultra-stable, chip-scale optical systems for sensing, timing, and signal processing. Key research directions include on-chip optical frequency references, soliton microcombs for broadband microwave and optical signal generation, and high-sensitivity nanoscale biosensors using high-Q microcavities and interferometric detection. The lab emphasizes miniaturization, thermal stability, and feedback-free operation to enable practical, system-on-a-chip applications in telecommunications, navigation, and biomedical diagnostics.

integrated photonicsoptical frequency referencesoliton microcombsnanoscale sensingon-chip optics

Research Overview

Papers
207
Total Citations
5,361
Papers (5y)
75
Primary Field
Physics and Astronomy

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
75total
2022
2023
2024
2025
2026
Citations per year (5y)
213total
20222023202420252026

Selected Papers

15
1
Article|697 citations·2012
Chemically etched ultrahigh-Q wedge-resonator on a silicon chip
Hansuek Lee, Tong Chen, Jiang Li, Ki Youl Yang, Seokmin Jeon, Oskar Painter, Kerry J. Vahala
SJR Q1Nature Photonics
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
2
Article|308 citations·2011
High sensitivity nanoparticle detection using optical microcavities
Tao Lű, Hansuek Lee, Tong Chen, Steven Herchak, Ji-Hun Kim, Scott E. Fraser, Richard C. Flagan, Kerry J. Vahala
SJR Q1Proceedings of the National Academy of SciencesOA

We demonstrate a highly sensitive nanoparticle and virus detection method by using a thermal-stabilized reference interferometer in conjunction with an ultrahigh-Q microcavity. Sensitivity is sufficient to resolve shifts caused by binding of individual nanobeads in solution down to a record radius of 12.5 nm, a size approaching that of single protein molecules. A histogram of wavelength shift versus nanoparticle radius shows that particle size can be inferred from shift maxima. Additionally, the

Electrical and Electronic EngineeringEngineering
3
Article|232 citations·2012
Ultra-low-loss optical delay line on a silicon chip
Hansuek Lee, Tong Chen, Jiang Li, Oskar Painter, Kerry J. Vahala
SJR Q1Nature CommunicationsOA

Light propagation through an optical fibre causes a long, non-resonant (true) time delay used in numerous applications. In contrast to how it is deployed in optical communication systems, fibre is coiled in these applications to reduce footprint. This is a configuration better suited for a chip-based waveguide that would improve shock resistance, and afford the possibility of integration for system-on-a-chip functionality. However, integrated waveguide attenuation rates lag far behind the corres

Electrical and Electronic EngineeringEngineering
4
Article|147 citations·2013
Spiral resonators for on-chip laser frequency stabilization
Hansuek Lee, Myoung‐Gyun Suh, Tong Chen, Jiang Li, Scott A. Diddams, Kerry J. Vahala
SJR Q1Nature CommunicationsOA

Frequency references are indispensable to radio, microwave and time keeping systems, with far reaching applications in navigation, communication, remote sensing and basic science. Over the past decade, there has been an optical revolution in time keeping and microwave generation that promises to ultimately impact all of these areas. Indeed, the most precise clocks and lowest noise microwave signals are now based on a laser with short-term stability derived from a reference cavity. In spite of th

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|69 citations·2022
Ultrastable microwave and soliton-pulse generation from fibre-photonic-stabilized microcombs
Dohyeon Kwon, Dongin Jeong, Igju Jeon, Hansuek Lee, Jungwon Kim
SJR Q1Nature CommunicationsOA

Abstract The ability to generate lower-noise microwaves has greatly advanced high-speed, high-precision scientific and engineering fields. Microcombs have high potential for generating such low-noise microwaves from chip-scale devices. To realize an ultralow-noise performance over a wider Fourier frequency range and longer time scale, which is required for many high-precision applications, free-running microcombs must be locked to more stable reference sources. However, ultrastable reference sou

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
6
Article|30 citations·2021
Self-stabilized soliton generation in a microresonator through mode-pulled Brillouin lasing
In Hwan, Dohyeong Kim, Dongin Jeong, Daewon Suk, Dohyeon Kwon, Jungwon Kim, Jae Hoon Lee, Hansuek Lee
SJR Q1Optics Letters

Reducing the complexity required for starting and maintaining a soliton state has been a major task to fully miniaturize soliton microcombs including the accompanying external operating systems. Here we experimentally examine the generative process of a self-stabilized soliton in which a continuous-wave pump detuned on the thermally stable blue side of a resonance generates a Brillouin lasing signal that relays the pump power to the soliton pulses via intracavity mode-coupling without breaking t

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
7
Article|26 citations·2019
Carbon nanotube Q-switched Yb:KLuW surface channel waveguide lasers
Jı Eun Bae, Tae Gwan Park, Esrom Kifle, Xavier Mateos, Magdalena Aguiló, Francesc Dı́az, Carolina Romero, Javier R. Vázquez de Aldana, Hansuek Lee, Fabıan Rotermund
SJR Q1Optics LettersOA

A channel waveguide (WG) buried immediately below the surface of a Yb:KLuW crystal is used as a laser gain medium for passive <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"> <mml:mrow class="MJX-TeXAtom-ORD"> <mml:mi>Q</mml:mi> </mml:mrow> </mml:math> -switching by both evanescent- and direct-field interactions with single-walled carbon nanotubes (SWCNTs) near 1040 nm. The SWCNTs used as saturable absorbers (SAs) are deposited on top of the half-ring-type channel WG fa

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|23 citations·2005
Performance analysis of nanocluster-Si sensitized Er-doped waveguide amplifier using top-pumped 470nm LED
Hansuek Lee, Jung H. Shin, Namkyoo Park
SJR Q1Optics ExpressOA

We analyze the performance of nanocrystal-Si (nc-Si) sensitized Er-doped waveguide amplifier using coupled nc-Si-Erbium rate equation, and suggest novel structures / operation methods which can be used to enhance its performance figures. With 2-dimensional modified propagation equation applied for the pump / signal waves along with modest assumptions on design parameters, we show that 10dB of gain with 0dBm input signal can be achieved with currently available pump LED power.

Materials ChemistryMaterials Science
9
Article|21 citations·2021
Supercontinuum generation in As2S3 waveguides fabricated without direct etching
Joonhyuk Hwang, Dae‐Gon Kim, Sangyoon Han, Dongin Jeong, Yong-Hee Lee, Duk‐Yong Choi, Hansuek Lee
SJR Q1Optics Letters

We report a supercontinuum generation (SCG) in a waveguide that spontaneously forms without an etching process during the deposition of a core material on a preformed ${\rm{Si}}{{\rm{O}}_2}$ substructure. The mechanism of dispersion control for this new, to the best of our knowledge, type of waveguide is analyzed by numerical simulation, which results in a design rule to achieve a target dispersion profile by adjusting the substructure geometry. SCG is experimentally demonstrated with a waveguid

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
10
Article|17 citations·2022
Electro-optic control of the external coupling strength of a high-quality-factor lithium niobate micro-resonator
Hyeon Jun Hwang, Hyungjun Heo, Kiyoung Ko, Mohamad Reza Nurrahman, Kiwon Moon, Jung Jin Ju, Sang-Wook Han, Hojoong Jung, Hansuek Lee, Min‐Kyo Seo
SJR Q1Optics Letters

Controlling the optical coupling between a micro-resonator and waveguide plays a key role in on-chip photonic circuits. Here, we demonstrate a two-point coupled lithium niobate (LN) racetrack micro-resonator that enables us to electro-optically traverse a full set of the zero-, under-, critical-, and over-coupling regimes with minimized disturbance of the intrinsic properties of the resonant mode. The modulation between the zero- and critical-coupling conditions cost a resonant frequency shift o

Electrical and Electronic EngineeringEngineering
11
Article|14 citations·2025
A mid-infrared Brillouin laser using ultra-high-Q on-chip resonators
Kiyoung Ko, Daewon Suk, Dohyeong Kim, Soobong Park, Betül Şen, Dae‐Gon Kim, Yingying Wang, Shixun Dai, Xunsi Wang, Rongping Wang, Byung Jae Chun, Kwang-Hoon Ko
SJR Q1Nature CommunicationsOA

Ultra-high-Q optical resonators have facilitated advancements in on-chip photonics by harnessing nonlinear functionalities. While these breakthroughs, primarily focused on the near-infrared region, have extended interest to longer wavelengths holding importance for molecule science, the absence of ultra-high-Q resonators in this region remains a significant challenge. Here, we have developed on-chip microresonators with a remarkable Q-factor of 38 million at 3.86 μm wavelength, surpassing previo

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
12
Article|12 citations·2024
Hyperband electro-optic modulator based on a two-pulley coupled lithium niobate racetrack resonator
Hyeon Jun Hwang, Mohamad Reza Nurrahman, Hyungjun Heo, Kiyoung Ko, Kiwon Moon, Jung Jin Ju, Sang-Wook Han, Hojoong Jung, Hansuek Lee, Min‐Kyo Seo
SJR Q1Optics Letters

Integrated optical modulators (IOMs) are crucial components of on-chip photonic circuits. However, most conventional IOMs are restricted to specific spectral bands. Here, we leveraged the wide transparency window of lithium niobate in conjunction with the two-pulley coupled resonator method. This approach led to the development of a hyperband electro-optic (EO) modulator that operates over an expansive spectral range from 775 to 1550 nm on a single device. The demonstrated EO modulator exhibits

Electrical and Electronic EngineeringEngineering
13
Article|11 citations·2007
Estimation of potential health gains from reducing multiple risk factors of stroke in Korea
Hansuek Lee, Seok‐Jun Yoon, Hyo-Jeong Ahn, Ok Ryun Moon
SJR Q1Public Health
General Health ProfessionsHealth Professions
14
Article|6 citations·2021
Hydrophobic passivation of ultra-high-Q silica wedge resonators using hexamethyldisilazane
Dongin Jeong, Dae‐Gon Kim, In Hwan, Hansuek Lee
SJR Q1Optics Letters

Dissipative Kerr solitons in ultra-high- <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"> <mml:mi>Q</mml:mi> </mml:math> resonators are extremely sensitive to the thermal behavior of the resonators. Especially for resonators with hydrophilic surfaces, moisture continuously adsorbs on their surfaces and causes additional absorption loss that results in an excessive thermal shift of resonance frequency. This change makes soliton mode locking more challenging or even impos

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
15
Article|6 citations·2020
A novel nucleic acid amplification system based on nano-gap embedded active disk resonators
Eun Yeong Lee, Yeseul Kim, Bonhan Koo, Geun Su Noh, Hansuek Lee, Yong Shin
SJR Q1Sensors and Actuators B ChemicalOA
Electrical and Electronic EngineeringEngineering

Research Areas

Atomic and Molecular Physics, and OpticsElectrical and Electronic EngineeringMaterials ChemistryBiomedical EngineeringSpectroscopyMechanical Engineering

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