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Jeong-Yeol Eom

Korea University · Physics and Astronomy

About the Lab

Professor Jeong-Yeol Eom's research lab specializes in the development and optimization of advanced scintillator materials and radiation detection systems for extreme environments and medical imaging applications. The lab focuses on single-crystal inorganic scintillators with enhanced radiation resistance, temperature stability, and mechanical robustness, targeting applications in nuclear energy, space exploration, and positron emission tomography (PET). A key research direction involves improving timing resolution in ToF-PET through innovative scintillator-readout configurations and low-noise front-end electronics, including SiPM-based systems and RF amplifier integration. The lab also explores novel opto-ultrasonic imaging techniques for biomedical applications.

scintillatorstime-of-flight PETradiation detectionSiPMopto-ultrasound

Research Overview

Papers
117
Total Citations
1,312
Papers (5y)
35
Primary Field
Physics and Astronomy

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
35total
2022
2023
2024
2025
2026
Citations per year (5y)
77total
20222023202420252026

Selected Papers

15
1
Review|122 citations·2021
A Review of Inorganic Scintillation Crystals for Extreme Environments
Chanho Kim, Wonhi Lee, Alima Melis, Abdallah Elmughrabi, Kisung Lee, Chansun Park, Jung‐Yeol Yeom
SJR Q2CrystalsOA

In the past, the main research and use of scintillators in extreme environments were mainly limited to high energy physics and the well-logging industry, but their applications are now expanding to reactor monitoring systems, marine and space exploration, nuclear fusion, radiation therapy, etc. In this article, we review and summarize single-crystal inorganic scintillator candidates that can be applied to radiation detection in extreme environments. Crucial scintillation properties to consider f

RadiationPhysics and Astronomy
2
Article|114 citations·2013
First Performance Results of Ce:GAGG Scintillation Crystals With Silicon Photomultipliers
Jung‐Yeol Yeom, Seiichi Yamamoto, Stephen E. Derenzo, Virginia Spanoudaki, Kei Kamada, Takanori Endo, Craig S. Levin
SJR Q2IEEE Transactions on Nuclear Science

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RadiationPhysics and Astronomy
3
Article|104 citations·2013
Optimizing timing performance of silicon photomultiplier-based scintillation detectors
Jung‐Yeol Yeom, Ruud Vinke, Craig S. Levin
SJR Q1Physics in Medicine and Biology

Precise timing resolution is crucial for applications requiring photon time-of-flight (ToF) information such as ToF positron emission tomography (PET). Silicon photomultipliers (SiPM) for PET, with their high output capacitance, are known to require custom preamplifiers to optimize timing performance. In this paper, we describe simple alternative front-end electronics based on a commercial low-noise RF preamplifier and methods that have been implemented to achieve excellent timing resolution. Tw

RadiationPhysics and Astronomy
4
Review|40 citations·2016
Instrumentation for Time-of-Flight Positron Emission Tomography
Muhammad Nasir Ullah, Eva Pratiwi, Jimin Cheon, Hojong Choi, Jung‐Yeol Yeom
SJR Q2Nuclear Medicine and Molecular ImagingOA

Positron emission tomography (PET) is a molecular imaging modality that provides information at the molecular level. This system is composed of radiation detectors to detect incoming coincident annihilation gamma photons emitted from the radiopharmaceutical injected into a patient's body and uses these data to reconstruct images. A major trend in PET instrumentation is the development of time-of-flight positron emission tomography (ToF-PET). In ToF-PET, the time information (the instant the radi

RadiationPhysics and Astronomy
5
Article|39 citations·2014
Side readout of long scintillation crystal elements with digital SiPM for TOF‐DOI PET
Jung‐Yeol Yeom, Ruud Vinke, Craig S. Levin
SJR Q1Medical PhysicsOA

PURPOSE: Side readout of scintillation light from crystal elements in positron emission tomography (PET) is an alternative to conventional end-readout configurations, with the benefit of being able to provide accurate depth-of-interaction (DOI) information and good energy resolution while achieving excellent timing resolution required for time-of-flight PET. This paper explores different readout geometries of scintillation crystal elements with the goal of achieving a detector that simultaneousl

RadiationPhysics and Astronomy
6
Article|37 citations·2018
Development of a Multiwavelength Visible-Range-Supported Opto–Ultrasound Instrument Using a Light-Emitting Diode and Ultrasound Transducer
Hojong Choi, Jung‐Yeol Yeom, Jaemyung Ryu
SJR Q1SensorsOA

A new multiwavelength visible-range-supported opto–ultrasound instrument using a light-emitting diode and ultrasound transducer was developed in order to produce multiwavelength visible light with minimized color aberration errors, and detect ultrasound signals emitted from the target. In the instrument, the developed optical systems can provide multiwavelength optical transmission with low optical aberration within 10-cm ranges that are reasonably flat in the modulation transfer function at spa

Biomedical EngineeringEngineering
7
Article|34 citations·2017
Power MOSFET Linearizer of a High-Voltage Power Amplifier for High-Frequency Pulse-Echo Instrumentation
Hojong Choi, Woo Park, Jung‐Yeol Yeom, Changhan Yoon
SJR Q1SensorsOA

A power MOSFET linearizer is proposed for a high-voltage power amplifier (HVPA) used in high-frequency pulse-echo instrumentation. The power MOSFET linearizer is composed of a DC bias-controlled series power MOSFET shunt with parallel inductors and capacitors. The proposed scheme is designed to improve the gain deviation characteristics of the HVPA at higher input powers. By controlling the MOSFET bias voltage in the linearizer, the gain reduction into the HVPA was compensated, thereby reducing

Radiology, Nuclear Medicine and ImagingMedicine
8
Article|30 citations·2013
Fast Timing Silicon Photomultipliers for Scintillation Detectors
Jung‐Yeol Yeom, Ruud Vinke, N. Pavlov, Stephen Bellis, Liam Wall, Kevin O’Neill, Carl Jackson, Craig S. Levin
SJR Q2IEEE Photonics Technology Letters

A new silicon photomultiplier is fabricated for fast timing applications by SensL Technologies Ltd. This new family of silicon photomultiplier, herein referred to as fast SPM devices, is fabricated with a third terminal that has a low output capacitance to improve timing performance. Two fast SPMs (an N-on-P type and a prototype P-on-N type) are assessed for energy and timing performances in scintillation detectors. When coupled with L(Y)SO:Ce crystals, the optimal energy resolutions for the 511

RadiationPhysics and Astronomy
9
Article|29 citations·2019
Wavelength discrimination (WLD) TOF-PET detector with DOI information
Muhammad Nasir Ullah, Eva Pratiwi, Jin Ho Park, Kisung Lee, Hojong Choi, Jung‐Yeol Yeom
SJR Q1Physics in Medicine and Biology

Depth-of-interaction (DOI) encoding can contribute to improving spatial resolution uniformity and sensitivity in positron-emission-tomography (PET) scanners. In addition, time-of-flight (TOF) PET scanners with DOI encoding have received considerable interest because of their potential for improving the spatial resolution, sensitivity, and image quality of the overall system. In this study, a new DOI detector configuration utilizing scintillators' emission wavelength is proposed, and experimental

RadiationPhysics and Astronomy
10
Article|24 citations·2017
Development of a Double-Gauss Lens Based Setup for Optoacoustic Applications
Hojong Choi, Jaemyung Ryu, Jung‐Yeol Yeom
SJR Q1SensorsOA

In optoacoustic (photoacoustic) systems, different echo signal intensities such as amplitudes, center frequencies, and bandwidths need to be compensated by utilizing variable gain or time-gain compensation amplifiers. However, such electronic components can increase system complexities and signal noise levels. In this paper, we introduce a double-Gauss lens to generate a large field of view with uniform light intensity due to the low chromatic aberrations of the lens, thus obtaining uniform echo

Biomedical EngineeringEngineering
11
Article|24 citations·2021
Simultaneous Acquisition of Ultrasound and Gamma Signals with a Single-Channel Readout
Muhammad Nasir Ullah, Yuseung Park, Gyeong Beom Kim, Chanho Kim, Chansun Park, Hojong Choi, Jung‐Yeol Yeom
SJR Q1SensorsOA

We propose an integrated front-end data acquisition circuit for a hybrid ultrasound (US)-gamma probe. The proposed circuit consists of three main parts: (1) a preamplifier for the gamma probe, (2) a preprocessing analog circuit for the US, and (3) a digitally controlled analog switch. By exploiting the long idle time of the US system, an analog switch can be used to acquire data of both systems using a single output channel simultaneously. On the nuclear medicine (NM) gamma probe side, energy re

RadiationPhysics and Astronomy
12
Article|22 citations·2017
A Wideband High-Voltage Power Amplifier Post-Linearizer for Medical Ultrasound Transducers
Hojong Choi, Changhan Yoon, Jung‐Yeol Yeom
SJR Q2Applied SciencesOA

The medical ultrasound transducer is a principal component in ultrasound systems, as it significantly influences system performance. The high-voltage power amplifier (HVPA) is the key ultrasound transmitter component and interfaces with the medical ultrasound transducer. Therefore, the performance of the HVPA critically affects the echo signal quality of the ultrasound transducer. As they are inherently non-linear devices, harmonic distortion of echo signals generated by the ultrasound transduce

Radiology, Nuclear Medicine and ImagingMedicine
13
Article|21 citations·2013
Readout Electronics and Data Acquisition of a Positron Emission Tomography Time-of-Flight Detector Module With Waveform Digitizer
Jung‐Yeol Yeom, Ruud Vinke, Virginia Spanoudaki, Key Jo Hong, Craig S. Levin
SJR Q2IEEE Transactions on Nuclear Science

A multi-element silicon photomultiplier (SiPM) based time-of-flight (ToF) detector module for positron emission tomography (PET) has been developed. The detector module is based on a 4 × 4 array of LYSO-SiPM elements (Hamamatsu MPPC S10931-050P), with individual bias supply for each element. Each element is read out by a wideband, low-noise RF amplifier to maximize timing performance. All 16 outputs are digitized with a high-speed CAEN V1742 digitizer module (32 + 2 channels, 5 GS/s sampling, 12

RadiationPhysics and Astronomy
14
Article|19 citations·2018
Studies on sub-millimeter LYSO:Ce, Ce:GAGG, and a new Ce:GFAG block detector for PET using digital silicon photomultiplier
Muhammad Nasir Ullah, Eva Pratiwi, Jin Ho Park, Seiichi Yamamoto, Kei Kamada, Akira Yoshikawa, Jung‐Yeol Yeom
SJR Q2Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment
RadiationPhysics and Astronomy
15
Article|17 citations·2006
A 12-Channel CMOS Preamplifier-Shaper-Discriminator ASIC for APD and Gas Counters
Jung‐Yeol Yeom, I. Defendi, Hiroyuki Takahashi, K. Zeitelhack, M. Nakazawa, Hideo Murayama
SJR Q2IEEE Transactions on Nuclear Science

A 12-Channel (Ch) CMOS Preamplifier-Shaper-Discriminator ASIC designed for avalanche photodiode (APD) and gas counter readout has been fabricated on a 2.4 mmtimes2.4 mm die area using ROHM 0.35-muCMOS technology. This mixed signal ASIC consists of both analog and digital components and a window type discriminator is easily implemented through the use of a digital encoder to encode outputs from two comparators. The charge sensitive preamplifier is based on gain-boosted (regulated) cascode topolog

Nuclear and High Energy PhysicsPhysics and Astronomy

Research Areas

RadiationElectrical and Electronic EngineeringBiomedical EngineeringRadiology, Nuclear Medicine and ImagingNuclear and High Energy PhysicsInstrumentation

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