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김정리 교수

Jeongri Kim

이화여자대학교 물리학과 · 물리·천문학

연구실 소개

김정리 교수의 연구실은 중력파 천문학과 천체물리학을 중심으로, 이중 중성자별 및 블랙홀 이진계의 형성과 동역학, 펄서 이진계의 병합률 추정 등에 초점을 맞추고 있습니다. 특히 N체 시뮬레이션과 베이지안 통계 분석을 활용해 천체 물체의 관측 선택 효과를 보정하고, 은하수 내 병합 속도를 정량적으로 추정하는 데 기여하고 있습니다. KAGRA와 같은 중력파 탐지기의 설계 및 응용에 있어서도 핵심적인 연구를 수행하고 있습니다.

중력파 탐지이중 중성자별블랙홀 이진계펄서 병합률통계적 분석

연구 현황

논문 수
178
총 인용 수
47,162
최근 5년 논문
32
주요 분야
물리·천문학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
32총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
2,837총합
20222023202420252026

주요 논문

15
1
논문|인용수 479·2021
KAGRA: 2.5 generation interferometric gravitational wave detector
T. Akutsu, Masaki Ando, K. Arai, Y. Arai, S. Araki, A. Araya, N. Aritomi, Hideki Asada, Y. Aso, S. Atsuta, K. Awai, S. Bae
Tokyo Tech Research Repository (Tokyo Institute of Technology)

The recent detections of gravitational waves (GWs) reported by LIGO/Virgo collaborations have made significant impact on physics and astronomy. A global network of GW detectors will play a key role to solve the unknown nature of the sources in coordinated observations with astronomical telescopes and detectors. Here we introduce KAGRA (former name LCGT; Large-scale Cryogenic Gravitational wave Telescope), a new GW detector with two 3-km baseline arms arranged in the shape of an "L", located insi

Astronomy and AstrophysicsPhysics and Astronomy
2
논문|인용수 120·2017
Black hole binaries dynamically formed in globular clusters
Dawoo Park, Chunglee Kim, Hyung Mok Lee, Yeong-Bok Bae, Krzysztof Belczyński
SJR Q1Monthly Notices of the Royal Astronomical SocietyOA

We investigate properties of black hole (BH) binaries formed in globular clusters via dynamical processes, using direct N-body simulations. We pay attention to effects of BH mass function on the total mass and mass ratio distributions of BH binaries ejected from clusters. Firstly, we consider BH populations with two different masses in order to learn basic differences from models with single-mass BHs only. Secondly, we consider continuous BH mass functions adapted from recent studies on massive

Astronomy and AstrophysicsPhysics and Astronomy
3
논문|인용수 48·2010
PULSAR BINARY BIRTHRATES WITH SPIN-OPENING ANGLE CORRELATIONS
R. O’Shaughnessy, Chunglee Kim
SJR Q1The Astrophysical JournalOA

Empirical birthrate estimates for pulsar binaries depend on the fraction of sky subtended by the pulsar beam: the pulsar beaming fraction. This fraction depends on both the pulsar's opening angle and the misalignment angle between its spin and magnetic axes. Previous estimates use the average value for only two pulsars, i.e. PSRs B1913+16 and B1534+12. We explore how birthrate predictions depend on assumptions about opening angle and alignment, using empirically-motivated distributions to define

Astronomy and AstrophysicsPhysics and Astronomy
4
논문|인용수 35·2004
The Probability Distribution Of Binary Pulsar Coalescence Rates. II. Neutron Star–White Dwarf Binaries
Chunglee Kim, V. Kalogera, D. R. Lorimer, Tiffany White
SJR Q1The Astrophysical JournalOA

We consider the statistics of pulsar binaries with white dwarf companions (NS-WD). Using the statistical analysis method developed by Kim et al. (2003) we calculate the Galactic coalescence rate of NS-WD binaries due to gravitational-wave emission. We find that the most likely values for the total Galactic coalescence rate (R_tot) of NS-WD binaries lie in the range 0.2--10 per Myr depending on different assumed pulsar population models. For our reference model, we obtain R_tot=4.11_(-2.56)^(+5.2

Astronomy and AstrophysicsPhysics and Astronomy
5
논문|인용수 27·2010
The effect of PSR J0737-3039 on the DNS merger rate and implications for gravity-wave detection
Chunglee Kim, Vicky Kalogera, D. R. Lorimer
SJR Q1New Astronomy Reviews
Astronomy and AstrophysicsPhysics and Astronomy
6
논문|인용수 12·2003
The Probability Distribution of Binary Pulsar Coalescence Rates
Chunglee Kim
AIP conference proceedingsOA

Inspiraling binary systems are good candidates for being detected by ground‐based gravitational‐wave detectors. In this work, we present a statistical analysis method to estimate the coalescence rate of pulsar binary systems, such as double neutron star (NS‐NS) and neutron star‐white dwarf (NS‐WD) binaries. The method involves the simulation of selection effects inherent in all relevant radio pulsar surveys and a Bayesian analysis to calculate the probability distribution function of the total c

Astronomy and AstrophysicsPhysics and Astronomy
7
preprint|인용수 8·2006
Effect of PSR J0737-3039 on the DNS Merger Rate and Implications for GW Detection
Chunglee Kim, Vicky Kalogera, D. R. Lorimer
arXiv (Cornell University)OA

We present the current estimates of the Galactic merger rate of double-neutron-star (DNS) systems. Using a statistical analysis method, we calculate the probability distribution function (PDF) of the rate estimates, which allows us to assign confidence intervals to the rate estimates. We calculate the Galactic DNS merger rate based on the three known systems B1913+16, B1534+12, and J0737-3039. The discovery of J0737-3039 increases the estimated DNS merger rate by a factor ~6 than what is previou

Astronomy and AstrophysicsPhysics and Astronomy
8
논문|인용수 7·2018
NEUTRON STARS IN THE GALACTIC CENTER
Chunglee Kim, M. B. Davies
Lund University Publications (Lund University)

The Galactic Center is one of the most dense stellar environments in the Galaxy and is considered to be a plausible place to harbor many neutron stars. In this brief review, we summarize observational efforts in search of neutron stars within a few degrees about the Galactic Center. Up to 10% of Galactic neutron stars may reside in this central region and it is possible that more than a thousand neutron stars are located within only ~ 25′′ (≤ 1 pc) about the Galactic Center. Based on observation

Astronomy and AstrophysicsPhysics and Astronomy
9
논문|인용수 5·2018
NEUTRON STARS IN THE GALACTIC CENTER
김정리, Melvyn B. Davies

The Galactic Center is one of the most dense stellar environments in the Galaxy and is considered to be a plausible place to harbor many neutron stars. In this brief review, we summarize observational efforts in search of neutron stars within a few degrees about the Galactic Center. Up to 10\% of Galactic neutron stars may reside in this central region and it is possible that more than a thousand neutron stars are located within only $\sim25''$ ($\le 1$ pc) about the Galactic Center. Based on ob

11
논문|인용수 3·2008
Galactic Pulsar Population: Current Understanding and Future Prospects
Chunglee Kim, C. Bassa, Z. Wang, A. Cumming, V. M. Kaspi
AIP conference proceedings

The main objectives of modeling the Galactic pulsar population are (i) to understand underlying properties of various pulsar subclasses, and (ii) to probe physical conditions relevant to the formation and evolution of these objects. A theoretical approach is useful to explore various stellar populations, but introduces large systematic uncertainties in results. An empirical approach is known to be more reliable, but is limited only to known populations. Traditionally, the pulsar population studi

Astronomy and AstrophysicsPhysics and Astronomy
12
논문|인용수 2·2004
The Galactic Double-Neutron-Star Merger Rate: Most Current Estimates
Chunglee Kim, V. Kalogera, D. R. Lorimer, M. Ihm, V. Belczynski
arXiv (Cornell University)OA

We summarize our results on the Galactic merger rate of double neutron stars (DNS) in view of the recent discovery of PSR J0737-3039. We also present previously unpublished results for the 'global' probability distribution of merger rate values that incorporate the presently known systematics from the radio pulsar luminosity function. The most likely value obtained from the global distribution is only ~15 per Myr, but a re-analysis of the current pulsar sample and radio luminosities is needed fo

Astronomy and AstrophysicsPhysics and Astronomy
13
논문|인용수 1·2021
Prospects of multimessenger astronomy in the next decades
Chunglee Kim
SJR Q3Journal of the Korean Physical Society
Astronomy and AstrophysicsPhysics and Astronomy
14
book chapter|인용수 1·2006
The Double-Neutron-Star Inspiral Rate and Expectations for Gravitational-Wave Detection
Chunglee Kim, V. Kalogera, D. R. Lorimer, M. Ihm, Krzysztof Belczyński
Astronomy and AstrophysicsPhysics and Astronomy
15
논문|인용수 1·1999
Source evolution function of cosmological gamma-ray bursts
Chunglee Kim, Jongmann Yang, Insu Yi
SJR Q3Journal of the Korean Physical Society
Astronomy and AstrophysicsPhysics and Astronomy

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