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Dong-Il Yeom

Dong-Il Yeom

D-Index & Metrics

Engineering and Technology

D-Index
37
Citations
4474
World Ranking
8484
National Ranking
227

Overview

Dong-Il Yeom is affiliated with Ajou University in South Korea. Their research spans primarily the fields of Engineering and Physics and Astronomy, with significant contributions across subfields such as Atomic and Molecular Physics, and Optics; Electrical and Electronic Engineering; Materials Chemistry; Biomedical Engineering; and Spectroscopy.

The scientist's work covers a variety of topics, encompassing Advanced Fiber Laser Technologies, Photonic Crystal and Fiber Optics, Laser-Matter Interactions and Applications, 2D Materials and Applications, Plasmonic and Surface Plasmon Research, Quantum optics and atomic interactions, and Atomic and Subatomic Physics Research.

Recent publications from Dong-Il Yeom include the following papers:

  • Enhanced third-harmonic generation by manipulating the twist angle of bilayer graphene, 2021, Light Science & Applications
  • Ultrafast Fiber Lasers with Low-Dimensional Saturable Absorbers: Status and Prospects, 2021, Sensors
  • All-fiber integrated saturable absorber-tunable wavelength filter for Q-switching laser in both C- and L-bands, 2021, Optics Express
  • Highly efficient diode-pumped alkali-vapor amplification with near-extreme-limit gain, 2022, Optics Express
  • Laser-driven self-exfoliation of graphene oxide layers on a fiber facet for Q switching of an Er-doped fiber laser at the longest wavelength, 2020, Photonics Research

Frequent coauthors collaborating with Dong-Il Yeom include:

  • Seongju Ha
  • Kyunghwan Oh
  • Jungseok Choi
  • Youngdong Yoo
  • Pulak Chandra Debnath

The scientist's publications commonly appear in venues such as Optics Express, Nanophotonics, Optics & Laser Technology, Journal of the Korean Physical Society, and Korean Journal of Optics and Photonics.

Best Publications

  • Low-threshold supercontinuum generation in highly nonlinear chalcogenide nanowires

    Dong-Il Yeom;Eric C. Mägi;Michael R. E. Lamont;Michaël A. F. Roelens

  • Enhanced Kerr nonlinearity in sub-wavelength diameter As2Se3 chalcogenide fiber tapers

    E. C. Mägi;L. B. Fu;H. C. Nguyen;M. R. E. Lamont

  • Active control of all-fibre graphene devices with electrical gating

    Eun Jung Lee;Sun Young Choi;Hwanseong Jeong;Nam Hun Park

  • Boosting the Non Linear Optical Response of Carbon Nanotube Saturable Absorbers for Broadband Mode-Locking of Bulk Lasers

    W. B. Cho;J. H. Yim;S. Y. Choi;S. Lee

  • Efficient Mode-Locking of Sub-70-fs Ti:Sapphire Laser by Graphene Saturable Absorber

    In Hyung Baek;Hwang Woon Lee;Sukang Bae;Byung Hee Hong

  • Mode-locking of Er-doped fiber laser using a multilayer MoS2 thin film as a saturable absorber in both anomalous and normal dispersion regimes.

    Reza Khazaeizhad;Sahar Hosseinzadeh Kassani;Hwanseong Jeong;Dong Il Yeom

  • High-quality, large-area monolayer graphene for efficient bulk laser mode-locking near 1.25 μm.

    Won Bae Cho;Jun Wan Kim;Hwang Woon Lee;Sukang Bae

  • All-fiber Er-doped Q-Switched laser based on Tungsten Disulfide saturable absorber

    Sahar Hosseinzadeh Kassani;Reza Khazaeinezhad;Hwanseong Jeong;Tavakol Nazari

  • All-fiber Er-doped dissipative soliton laser based on evanescent field interaction with carbon nanotube saturable absorber

    Ju Hee Im;Sun Young Choi;Fabian Rotermund;Dong-Il Yeom

  • Monolayer graphene saturable absorbers with strongly enhanced evanescent-field interaction for ultrafast fiber laser mode-locking

    Nam Hun Park;Hwanseong Jeong;Sun Young Choi;Mi Hye Kim

  • Graphene-filled hollow optical fiber saturable absorber for efficient soliton fiber laser mode-locking.

    Sun Young Choi;Dae Kun Cho;Yong Won Song;Kyunghwan Oh

  • Ultrafast Pulsed All-Fiber Laser Based on Tapered Fiber Enclosed by Few-Layer WS 2 Nanosheets

    Reza Khazaeinezhad;Sahar Hosseinzadeh Kassani;Hwanseong Jeong;Kyung Jun Park

  • 175 fs Tm:Lu2O3 laser at 2.07 µm mode-locked using single-walled carbon nanotubes.

    Andreas Schmidt;Philipp Koopmann;Günter Huber;Peter Fuhrberg

  • Photonics: Rogue waves surface in light

    Dong-Il Yeom;Benjamin J. Eggleton

  • Toward higher-order passive harmonic mode-locking of a soliton fiber laser

    Chang Su Jun;Sun Young Choi;Fabian Rotermund;Byoung Yoon Kim

  • Femtosecond mode-locked fiber laser employing a hollow optical fiber filled with carbon nanotube dispersion as saturable absorber.

    Sun Young Choi;Fabian Rotermund;Hojoong Jung;Kyunghwan Oh

  • All-fiber dissipative soliton laser with 10.2?nJ pulse energy using an evanescent field interaction with graphene saturable absorber

    Sun Young Choi;Hwanseong Jeong;Byung Hee Hong;Fabian Rotermund

  • Ultrafast nonlinear optical properties of thin-solid DNA film and their application as a saturable absorber in femtosecond mode-locked fiber laser.

    Reza Khazaeinezhad;Reza Khazaeinezhad;Sahar Hosseinzadeh Kassani;Sahar Hosseinzadeh Kassani;Bjorn Paulson;Hwanseong Jeong

  • Single-walled carbon nanotube saturable absorber assisted high-power mode-locking of a Ti:sapphire laser.

    In Hyung Baek;Sun Young Choi;Hwang Woon Lee;Won Bae Cho

  • Laser-induced thermoelastic effects can evoke tactile sensations.

    Jae-Hoon Jun;Jong-Rak Park;Sung-Phil Kim;Young Min Bae

  • Low noise GHz passive harmonic mode-locking of soliton fiber laser using evanescent wave interaction with carbon nanotubes.

    Chang Su Jun;Ju Hee Im;Sang Hwa Yoo;Sun Young Choi

Frequent Co-Authors

Fabian Rotermund
Fabian Rotermund Korea Advanced Institute of Science and Technology
Byoung Yoon Kim
Byoung Yoon Kim Korea Advanced Institute of Science and Technology
Benjamin J. Eggleton
Benjamin J. Eggleton University of Sydney
Uwe Griebner
Uwe Griebner Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy
Byung Hee Hong
Byung Hee Hong Seoul National University
Eric Magi
Eric Magi University of Sydney
Soonil Lee
Soonil Lee Ajou University
Do Hyun Kim
Do Hyun Kim Korea Advanced Institute of Science and Technology
Sukang Bae
Sukang Bae Korea Institute of Science and Technology
Michael J. Withford
Michael J. Withford Macquarie University

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