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Yoon, Tai Hyun

Korea University · Physics and Astronomy

About the Lab

Professor Yoon, Tai Hyun's research lab specializes in ultrafast optical spectroscopy, quantum optics, and precision metrology, with a focus on exploring light-matter interactions at the quantum level. The lab investigates phenomena such as laser-induced birefringence, wave-particle duality, and two-photon transitions in cold atoms and rare-earth doped systems, leveraging advanced laser techniques like femtosecond frequency combs and dual-comb spectroscopy. Key research directions include high-resolution spectroscopy, quantum coherence control, and the development of novel optical measurement methods for nanometrology and frequency stabilization. The lab also pioneers experimental approaches to test foundational principles of quantum mechanics, such as Bohr's complementarity, using parametric down-conversion and coherent control schemes.

ultrafast spectroscopyquantum opticsfrequency combsnanometrologycoherent control

Research Overview

Papers
140
Total Citations
3,927
Papers (5y)
27
Primary Field
Physics and Astronomy

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
27total
2022
2023
2024
2025
2026
Citations per year (5y)
127total
20222023202420252026

Selected Papers

15
1
Article|46 citations·2004
Laser-induced birefringence in a wavelength-mismatched cascade system of inhomogeneously broadened Yb atoms
Tai Hyun Yoon, Chang Yong Park, Sung Jong Park
SJR Q1Physical Review AOA

We report the observation of laser-induced birefringence (LIB) in a wavelength-mismatched cascade system ($J=0\ensuremath{\leftrightarrow}J=1\ensuremath{\leftrightarrow}J=0$ transitions) of inhomogeneously broadened ytterbium atoms with strong pump and probe fields. We investigate the transmission spectrum of two circular polarization (${\ensuremath{\sigma}}_{p}^{+}$ and ${\ensuremath{\sigma}}_{p}^{\ensuremath{-}}$) components of strong probe field at fixed frequency, depending on the detuning o

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
2
Article|41 citations·2021
Quantitative complementarity of wave-particle duality
Tai Hyun Yoon, Minhaeng Cho
SJR Q1Science AdvancesOA

between the quantons and the remaining degrees of freedom by the relation [Formula: see text], which is experimentally confirmed. We further prove that the experimental scheme using two stimulated parametric downconversion processes is an ideal tool for investigating and understanding wave-particle duality and Bohr's complementarity quantitatively.

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Article|37 citations·2000
Phase-coherent multilevel two-photon transitions in cold Rb atoms: Ultrahigh-resolution spectroscopy via frequency-stabilized femtosecond laser
Tai Hyun Yoon, Adela Marian, J. L. Hall, Jun Ye
SJR Q1Physical Review AOA

A two-photon transition in cold Rb atoms will be probed with a phase-coherent wide bandwidth femtosecond laser comb. Frequency domain analysis yields a high-resolution picture where phase coherence among various transition pathways through different intermediate states produces interference effects on the resonantly enhanced transition probability. This result is supported by the time domain Ramsey interference effect. The two-photon transition spectrum is analyzed in terms of the pulse repetiti

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|36 citations·2001
Absolute frequency measurement of the iodine-stabilized He-Ne laser at 633 nm
Tai Hyun Yoon, Jun Ye, J. L. Hall, J-M Chartier
SJR Q3Applied Physics B
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|33 citations·2018
Dual-Frequency Comb Transient Absorption: Broad Dynamic Range Measurement of Femtosecond to Nanosecond Relaxation Processes
JunWoo Kim, Byungmoon Cho, Tai Hyun Yoon, Minhaeng Cho
SJR Q1The Journal of Physical Chemistry Letters

We experimentally demonstrate a dual-frequency comb-based transient absorption (DFC-TA) technique, which has a 12 fs time resolution and an ultrafast scan rate. Here, the fast scan rate is achieved by employing asynchronous optical sampling (ASOPS), which utilizes two independent mode-locked lasers with a slightly detuned repetition rates. The ASOPS approach is advantageous because photodegradation damage of optical sample during TA measurements can be minimized by a gated sampling. We show that

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
6
Article|30 citations·1999
Diffractometric methods for absolute measurement of diffraction-grating spacings
Tai Hyun Yoon, Cheon Il Eom, Myung Sai Chung, Hong Jin Kong
SJR Q1Optics Letters

We propose one- and two-wavelength methods of absolute measurement of diffraction-grating spacings based on the Littman configuration for autocollimation. The one-wavelength method has been applied to measure the spacing of a grating with a nominal value of 2160grooves/mm . The grating spacing was measured to be 463.16 nm, with an experimental standard deviation of 0.24 nm. It has been demonstrated that the both methods can provide direct traceability in the submicrometer region in terms of wave

Surfaces, Coatings and FilmsMaterials Science
7
Article|26 citations·1999
Absorption spectra of two-level atoms interacting with a strong polychromatic pump field and an arbitrarily intense probe field
Tai Hyun Yoon, Myung Sai Chung, Hai-Woong Lee
SJR Q1Physical Review A

A numerical method is introduced that solves the optical Bloch equations describing a two-level atom interacting with a strong polychromatic pump field with an equidistant spectrum and an arbitrarily intense monochromatic probe field. The method involves a transformation of the optical Bloch equations into a system of equations with time-independent coefficients at steady state via double harmonic expansion of the density-matrix elements, which is then solved by the method of matrix inversion. T

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|23 citations·2018
Interferometric Measurement of Transient Absorption and Refraction Spectra with Dual Frequency Comb
JunWoo Kim, Tai Hyun Yoon, Minhaeng Cho
SJR Q1The Journal of Physical Chemistry B

We demonstrate that a dual frequency comb-transient absorption (DFC-TA) technique can be combined with a time-domain interferometric detection to measure both the transient absorption and refraction spectra of molecules in solution. To do this, the pump-probe signal field of DFC-TA is allowed to interfere with a time-delayed local oscillator field in a time domain. We show that this DFC interferometric pump-probe spectroscopy (DFC-IPS) technique has a unique ability to extract the phase and ampl

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|23 citations·1999
Theoretical analysis of resonances in the polarization spectrum of a two-level atom driven by a polychromatic field
Tai Hyun Yoon, S. A. Pulkin, Jong Rak Park, Myung Sai Chung, Hai-Woong Lee
SJR Q1Physical Review A

Analytic solutions of the optical Bloch equations for a two-level atom interacting with a strong polychromatic field whose frequencies are symmetrically positioned with respect to the atomic frequency are used to obtain the polarization spectrum of the atom. The spectrum is found to consist of a series of discrete peaks or dips superimposed on the continuous part of the spectrum. Physical interpretation of resonances exhibited in the continuous part of the spectrum is given using a semiclassical

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
10
Article|20 citations·2020
Time-Resolved Impulsive Stimulated Raman Spectroscopy with Synchronized Triple Mode-Locked Lasers
JunWoo Kim, Tai Hyun Yoon, Minhaeng Cho
SJR Q1The Journal of Physical Chemistry Letters

A complete understanding of a photochemical reaction dynamics begins with real-time measurements of both electronic and vibrational structures of photoexcited molecules. Time-resolved impulsive stimulated Raman spectroscopy (TR-ISRS) with femtosecond actinic pump, Raman pump, and Raman probe pulses is one of the incisive techniques enabling one to investigate the structural changes of photoexcited molecules. Herein, we demonstrate that such femtosecond TR-ISRS is feasible with synchronized tripl

BiophysicsBiochemistry, Genetics and Molecular Biology
11
Article|17 citations·2010
Environmentally-stable all-normal-dispersion picosecond Yb-doped fiber laser with an achromatic quarter-wave-plate
Gwang Hoon Jang, Tai Hyun Yoon
SJR Q3Laser Physics

We present an environmentally-stable picosecond Yb-doped fiber laser by employing an achromatic quarter-wave-plate (AQWP) as a pulse stabilizer in the all-normal-dispersion and polarization-maintaining linear laser cavity. It is shown that the AQWP plays a critical role to control both the polarization state and spectral filtering of the proposed mode-locked laser. The demonstrated laser generates 2-ps-long pulses with pulse energies of 1 nJ at a repetition rate of 117 MHz and parabolic spectral

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
12
Article|16 citations·2019
Dual frequency-comb spectroscopy of chromophores in condensed phases
JunWoo Kim, Jonggu Jeon, Tai Hyun Yoon, Minhaeng Cho
SJR Q2Chemical Physics
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
13
Article|15 citations·2010
High-resolution parallel multipass laser interferometer with an interference fringe spacing of 15 nm
Jeongmin Lee, Hosang Yoon, Tai Hyun Yoon
SJR Q2Optics Communications
Mechanical EngineeringEngineering
14
Article|9 citations·2025
In situ and real-time ultrafast spectroscopy of photoinduced reactions in perovskite nanomaterials
Gi Rim Han, Mai Ngoc An, Hyunmin Jang, Noh Soo Han, Jun Woo Kim, Kwang Seob Jeong, Tai Hyun Yoon, Minhaeng Cho
SJR Q1Nature CommunicationsOA

By employing two synchronized mode-locked femtosecond lasers and interferometric detection of the pump-probe spectra—referred to as asynchronous and interferometric transient absorption—we have developed a method for broad dynamic range and rapid data acquisition. Using asynchronous and interferometric transient absorption, we examined photochemical changes during femtosecond pump-probe experiments on all-inorganic cesium lead halide nanomaterials. The laser pulse train facilitates photoreaction

Electrical and Electronic EngineeringEngineering
15
Article|9 citations·2023
Unveiling Ultrafast Carrier Dynamics of Tellurium Microcrystals by Two-Color Asynchronous Sampling Infrared Transient Absorption Spectroscopy
Hyunmin Jang, Noh Soo Han, Gahyeon Kim, Kwang Seob Jeong, Tai Hyun Yoon, Minhaeng Cho
SJR Q1The Journal of Physical Chemistry C

Tellurium (Te) microcrystal with a bandgap of approximately 0.37 eV is a potentially useful semiconducting material exhibiting ultrafast electronic relaxation processes. To measure the intervalley and intravalley relaxation rates, we carried out two-color near-IR (NIR) pump and mid-IR (MIR) probe studies of rod-type Te microcrystals, employing a repetition-frequency-stabilized NIR (800 nm) laser and an MIR (3300 nm) frequency comb. Using interferometrically detected two-color asynchronous sampli

Atomic and Molecular Physics, and OpticsPhysics and Astronomy

Research Areas

Atomic and Molecular Physics, and OpticsElectrical and Electronic EngineeringMechanical EngineeringAstronomy and AstrophysicsSpectroscopyBiomedical Engineering

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