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Eun-Jong Kim

Seoul National University · 工学

研究室紹介

Professor Eun-Jong Kim's research lab specializes in quantum optics, superconducting quantum circuits, and topological photonics, with a focus on engineering light-matter interactions at the quantum level. The lab develops novel metamaterial waveguides and photonic bandgap structures to control qubit-photon coupling, enabling exploration of topological quantum phenomena, slow-light effects, and long-range interactions in quantum simulators. By integrating tunable quantum emitters with engineered photonic environments, the lab advances quantum simulation, Hamiltonian learning, and quantum control in circuit quantum electrodynamics platforms. Additionally, the lab explores bioinspired nanogenerators for sustainable energy harvesting in wearable and implantable electronics.

quantum simulationtopological photonicssuperconducting circuitsquantum controlnanogenerators

Research Overview

Papers
39
Total Citations
1,076
Papers (5y)
13
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
13total
2022
2023
2024
2025
2026
Citations per year (5y)
149total
20222023202420252026

Selected Papers

15
1
Article|284 citations·2019
Cavity quantum electrodynamics with atom-like mirrors
Mohammad Mirhosseini, Eunjong Kim, Xueyue Zhang, Alp Sipahigil, Paul B. Dieterle, Andrew J. Keller, Ana Asenjo-Garcı́a, Darrick E. Chang, Oskar Painter
SJR Q1Nature
Artificial IntelligenceComputer Science
2
Article|187 citations·2021
Quantum Electrodynamics in a Topological Waveguide
Eunjong Kim, Xueyue Zhang, Vinicius S. Ferreira, Jash Banker, Joseph K. Iverson, Alp Sipahigil, Miguel Bello, Alejandro González-Tudela, Mohammad Mirhosseini, Oskar Painter
SJR Q1Physical Review XOA

While designing the energy-momentum relation of photons is key to many linear, nonlinear, and quantum optical phenomena, a new set of light-matter properties may be realized by employing the topology of the photonic bath itself. In this work we experimentally investigate the properties of superconducting qubits coupled to a metamaterial waveguide based on a photonic analog of the Su-Schrieffer-Heeger model. We explore topologically induced properties of qubits coupled to such a waveguide, rangin

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Article|140 citations·2015
Bioinspired piezoelectric nanogenerators based on vertically aligned phage nanopillars
Dong‐Myeong Shin, Hye Ji Han, Won‐Geun Kim, Eunjong Kim, Chuntae Kim, Suck Won Hong, Hyung-Kook Kim, Jin‐Woo Oh, Yoon‐Hwae Hwang
SJR Q1Energy & Environmental Science

Bioinspired piezoelectric nanogenerators based on phage nanopillars are inceptively demonstrated, and the electrical power from phage nanopillars holds promise for the development of implantable and wearable electronics.

Biomedical EngineeringEngineering
4
Article|132 citations·2018
Superconducting metamaterials for waveguide quantum electrodynamics
Mohammad Mirhosseini, Eunjong Kim, Vinicius S. Ferreira, Mahmoud Kalaee, Alp Sipahigil, Andrew J. Keller, Oskar Painter
SJR Q1Nature CommunicationsOA

Abstract Embedding tunable quantum emitters in a photonic bandgap structure enables control of dissipative and dispersive interactions between emitters and their photonic bath. Operation in the transmission band, outside the gap, allows for studying waveguide quantum electrodynamics in the slow-light regime. Alternatively, tuning the emitter into the bandgap results in finite-range emitter–emitter interactions via bound photonic states. Here, we couple a transmon qubit to a superconducting metam

Electrical and Electronic EngineeringEngineering
5
Article|104 citations·2023
A superconducting quantum simulator based on a photonic-bandgap metamaterial
Xueyue Zhang, Eunjong Kim, Daniel K. Mark, Soonwon Choi, Oskar Painter
SJR Q1Science

Synthesizing many-body quantum systems with various ranges of interactions facilitates the study of quantum chaotic dynamics. Such extended interaction range can be enabled by using nonlocal degrees of freedom such as photonic modes in an otherwise locally connected structure. Here, we present a superconducting quantum simulator in which qubits are connected through an extensible photonic-bandgap metamaterial, thus realizing a one-dimensional Bose-Hubbard model with tunable hopping range and on-

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
6
Article|76 citations·2015
Evaluation of Optimum Moisture Content for Composting of Beef Manure and Bedding Material Mixtures Using Oxygen Uptake Measurement
Eunjong Kim, Dong-Hyun Lee, Seunggun Won, Heekwon Ahn
Asian-Australasian Journal of Animal SciencesOA

Moisture content influences physiological characteristics of microbes and physical structure of solid matrices during composting of animal manure. If moisture content is maintained at a proper level, aerobic microorganisms show more active oxygen consumption during composting due to increased microbial activity. In this study, optimum moisture levels for composting of two bedding materials (sawdust, rice hull) and two different mixtures of bedding and beef manure (BS, Beef cattle manure+sawdust;

Soil ScienceAgricultural and Biological Sciences
7
Article|63 citations·2015
Circuit analog of quadratic optomechanics
Eunjong Kim, J. R. Johansson, Franco Nori
SJR Q1Physical Review AOA

We propose a superconducting electrical circuit that simulates a quadratic optomechanical system. A capacitor placed between two transmission-line (TL) resonators acts like a semitransparent membrane, and a superconducting quantum interference device (SQUID) that terminates a TL resonator behaves like a movable mirror. Combining these circuit elements, it is possible to simulate a quadratic optomechanical coupling whose coupling strength is determined by the coupling capacitance and the tunable

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|26 citations·2023
Self-powered smart skins for multimodal tactile perception based on triboelectric and hygroelectric working principles
Xiaoting Ma, Eunjong Kim, Jiaming Zhou, Jingyi Gao, Chuntae Kim, Huan Xiao, Ji Tae Kim, Dong‐Myeong Shin
SJR Q1Nano Energy
Biomedical EngineeringEngineering
9
Article|11 citations·2022
Engineered networking in a family of solvent-free single-ion conducting borate network polymer electrolytes for Li-metal battery applications
Jingyi Gao, Jiaming Zhou, Cong Wang, Xiaoting Ma, Ke Jiang, Eunjong Kim, Chang Li, Hongzhen Liu, Lizhi Xu, Ho Cheung Shum, Shien‐Ping Feng, Dong‐Myeong Shin
SJR Q1Chemical Engineering Journal
Electrical and Electronic EngineeringEngineering
10
Article|10 citations·2014
Effects of Thermal Pretreatment Temperature on the Solubilization Characteristics of Dairy Manure for Dry Anaerobic Digestion
Heekwon Ahn, Seunghun Lee, Eunjong Kim, Jaehee Lee, Yong Joo Sung
Korean Journal of Soil Science and FertilizerOA

The effect of thermal pretreatment conditions on hydrolysis characteristics of dairy manure and sawdust mixtures has been evaluated. Thermal pretreatment temperature varied between 35 and <TEX>$120^{\circ}C$</TEX> and the period of the treatment changed between 30 and 1440min (24h). As thermal pretreatment temperature and duration increased, organic material solublization rates were improved. Maximum solubilizations of chemical oxygen demand (SCOD), carbohydrates, and volatile fatty acids(VFAs)

Building and ConstructionEngineering
11
Article|6 citations·2020
Highly transparent all-dielectric metasurface to block the near-infrared region of the solar spectrum
Eunjong Kim, Sangwon Baek, Jae-Yong Park, Kwang Ho Kim, Jong‐Lam Lee
SJR Q1Optics ExpressOA

Blocking the near-infrared region (NIR) is indispensable for saving energy consumed to maintain the interior temperature in buildings. However, simultaneously enhancing transmission in visible light and blocking in the NIR remains challenging. Here, we theoretically demonstrate a transparent all-dielectric metasurface selectively blocking the NIR by using TiO 2 nanocylinders and an indium tin oxide (ITO) layer. The ITO layer is implemented as a back reflector because ITO is transparent in visibl

Electronic, Optical and Magnetic MaterialsMaterials Science
12
Preprint|6 citations·2021
Collapse and Revival of an Artificial Atom Coupled to a Structured Photonic Reservoir
Vinicius S. Ferreira, Jash Banker, Alp Sipahigil, Matthew H. Matheny, Andrew J. Keller, Eunjong Kim, Mohammad Mirhosseini, Oskar Painter
SJR Q1Physical Review XOA

A superconducting quantum circuit coupled to a tailored waveguide reservoir provides a platform for exploring non-Markovian quantum-optical dynamics, in which the reservoir maintains a memory of past events.

Artificial IntelligenceComputer Science
13
Article|4 citations·2025
Fast unconditional reset and leakage reduction of a tunable superconducting qubit via an engineered dissipative bath
Gihwan Kim, Andreas Butler, Vinicius S. Ferreira, Xueyue Zhang, Alex Hadley, Eunjong Kim, Oskar Painter
SJR Q1Physical Review AppliedOA

Rapid and accurate initialization of qubits, known as reset, is a crucial building block for various tasks in quantum information processing, such as quantum error correction and estimation of the statistics of noisy quantum devices with many qubits. We demonstrate unconditional reset of a frequency-tunable transmon qubit that simultaneously resets multiple excited states using a metamaterial waveguide engineered to provide a cold bath over a wide spectral range, while providing strong protectio

Artificial IntelligenceComputer Science
14
Article|3 citations·2005
Global Internet Routing Forensics: Validation of BGP Paths Using ICMP Traceback.
Eunjong Kim, Daniel Massey, Indrajit Ray

Abstract Nearly all network applications rely on the global Internet routing infrastructure to compute routes and deliver packets. Unfortunately, false Internet routes can be maliciously introduced with relative ease into the routing infrastructure. This is because Border Gateway Protocol (BGP), the Internet’s global routing protocol, lacks basic authentication and monitoring functionalities. If false routes are introduced, it can lead to total collapse of packet forwarding leading to denial of

Artificial IntelligenceComputer Science
15
Article|3 citations·2006
Resolving islands of security problem for DNSSEC
Eunjong Kim, Ashish Gupta, Batsukh Tsendjav, Dan Massey

The DNS Security Extensions (DNSSEC) were developed to add origin authentication and integrity. DNSSEC defined a public key infrastructure over DNS tree hierarchy for the public key validation. In DNSSEC, a parent zone authenticates public keys of its child zones. The authentication hierarchy is broken when a parent does not support DNSSEC. This paper proposes an effective mechanism to overcome this partial deployment problem. Our solution uses a public bulletin board for zones to post their DNS

Electrical and Electronic EngineeringEngineering

Research Areas

Artificial IntelligenceAtomic and Molecular Physics, and OpticsElectrical and Electronic EngineeringBuilding and ConstructionBiomedical EngineeringComputer Networks and Communications

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