변용익 교수
Yong-Ik Byun
연세대학교 천문우주학과 · 물리·천문학
연구실 소개
변용익 교수의 연구실은 은하의 중심 구조와 우주에서의 별 형성 역사에 중점을 두고 있으며, 특히 초신성 폭발 후 잔여물과 밀도가 높은 별 형성 영역을 해부하는 데에 초첨을 맞추고 있습니다. 허블 망원경 및 GALEX 위성 데이터를 활용해 은하의 밝기 프로파일, 먼지 분포, 별 형성률 등을 고해상도로 분석하며, 은하의 진화 과정에서 핵심적인 역할을 하는 중심 구조와 UV 빛의 변화를 규명하고자 합니다. 특히, 고적색 이동 우주에서 관측되는 라이만 브레이크 은하와 유사한 극도로 UV가 밝은 은하들(ULBGs)의 특성과 그 진화를 정량적으로 분석하는 데에도 기여하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15We have obtained V-band images of 45 nearby elliptical galaxies and bulges using the original Planetary Camera of the Hubble Space Telescope. The majority of the sample is at distances of 10-20 Mpc. This represents a substantial increase in the number of galaxies that have been studied at a resolution of a few parsecs. At this resolution, many galaxies reveal previously unknown central disks, dust clouds, and nuclear components. We find that galaxies have two types of brightness profiles. The fi
Abstract \nIn a companion Letter (Arnouts et al.) we present new measurements of the galaxy luminosity function at 1500 Å out to z~1 using Galaxy Evolution Explorer VIMOS-VLT Deep Survey observations (1039 galaxies with NUV<=24.5 and z>0.2) and at higher z using existing data sets. In this Letter we use the same sample to study evolution of the FUV luminosity density rho1500. We detect evolution consistent with a (1+z)2.5+/-0.7 rise to z~1 and (1+z)0.5+/-0.4 for z>1. The lumino
We have used the first matched set of GALEX and SDSS data to investigate the properties of a sample of 74 nearby galaxies with far-ultraviolet luminosities chosen to overlap the luminosity range of typical high-z Lyman Break Galaxies (LBGs). GALEX deep surveys have shown that ultraviolet-luminous galaxies (UVLGs) similar to these are the fastest evolving component of the UV galaxy population. Model fits to the combined GALEX and SDSS photometry yield typical FUV extinctions similar to LBGs. The
We present a set of structural parameters for the central parts of 57 early-type galaxies observed with the Planetary Camera of the Hubble Space Telescope. These parameters are based on a new empirical law that successfully characterizes the centers of early-type galaxies. This empirical law assumes that the surface brightness profile is a combination of two power laws with different slopes γ and β for the inner and outer regions. Conventional structural parameters such as core radius and centra
We describe a method of bulge-to-disk decomposition which utilizes a full two-dimensional image of a galaxy. It provides much better estimates of the structural parameters for each component than the widely used conventional procedure which involves a χ<SUP>2</SUP> decomposition on elliptically averaged profiles. The performances of the conventional one-dimensional method and the present two-dimensional technique are compared by using a set of realistic model galaxy images. We show that the conv
In order to find the best observable diagnostics for the amount of internal extinction within spiral galaxies, we have constructed realistic models for disk galaxies with immersed dust layers. The radiative transfer including both scattering and absorption has been computed for a range of model galaxies in various orientations. Standard galaxy surface photometry techniques were then applied to the numerical data to illustrate how different observables such as total magnitude, color and luminosit
We introduce new methods for robust high-precision photometry from well-sampled images of a non-crowded field with a strongly varying point-spread function. For this work, we used archival imaging data of the open cluster M37 taken by MMT 6.5 m telescope. We find that the archival light curves from the original image subtraction procedure exhibit many unusual outliers, and more than 20% of data get rejected by the simple filtering algorithm adopted by early analysis. In order to achieve better p
Recently it has been suggested that some bulges are really disks (Kormendy 1993). He argues that some bulges are not spheroidal components of steep luminosity distribution like elliptical galaxies but actually parts of flat disks, whose central luminosity profiles are steeper than the inward extrapolation of an exponential fit to the outer parts. The existence of disk-like bulges strongly supports the idea of disk secular evolution.
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