• 제목/요약/키워드: Galactic evolution

검색결과 204건 처리시간 0.024초

TIDAL DENSITIES OF GLOBULAR CLUSTERS AND THE GALACTIC MASS DISTRIBUTION

  • Lee, Hyung-Mok
    • 천문학회지
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    • 제23권2호
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    • pp.97-105
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    • 1990
  • The tidal radii of globular clusters reflect the tidal field of the Galaxy. The mass distribution of the Galaxy thus may be obtained if the tidal fields of clusters are well known. Although large amounts of uncertainties in the determination of tidal radii have been obstacles in utilizing this method, analysis of tidal density could give independent check for the Galactic mass distribution. Recent theoretical modeling of dynamical evolution including steady Galactic tidal field shows that the observationally determined tidal radii could be systematically larger by about a factor of 1.5 compared to the theoretical values. From the analysis of entire sample of 148 globular clusters and 7 dwarf spheroidal systems compiled by Webbink (1985), we find that such reduction from observed values would make the tidal density (the mean density within the tidal radius) distribution consistent with the flat rotation curve of our Galaxy out to large distances if the velocity distribution of clusters and dwarf spheroidals with respect to the Galactic center is isotropic.

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Hydrodynamic simulations in the Galactic Center : Tilted HI disk

  • Lee, Joowon;Kim, Sungsoo S.
    • 천문학회보
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    • 제41권2호
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    • pp.40.3-41
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    • 2016
  • Previous HI survey data have shown that the central HI gas in the Milky Way that resides within ~1.5 kpc of the Galactic Centre (GC) is tilted by ${\sim}15^{\circ}$ with respect to the Galactic plane. Although several models, such as a tilted disk model, have been suggested to interpret the observed morphology of the HI layer, it is still unknown what causes and how it preserves its tilted structure. We study the behavior of a gas disk near the GC using an N-body / SPH code. Our galaxy model includes four components; nuclear bulge, bulge, disk and halo. We construct a HI model whose radius is 1.3 kpc, scale height is 100 pc and mass is $3.6{\times}10^6M_{\odot}$. We also assume that the gas disk is initially tilted $30^{\circ}$ with respect to the Galactic plane. Here we report our simulation results and discuss the evolution of the tilted gas disk.

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Faraday Rotation Measurein the Large-Scale Structure II

  • Akahori, Takuya;Ryu, Dong-Su
    • 천문학회보
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    • 제35권1호
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    • pp.83.1-83.1
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    • 2010
  • In the last meeting of KAS, we reported the first statistical study of Faraday rotation measure (RM) in the large-scale structure of the universe using the data of cosmological structure formation simulations. With a turbulence dynamo model for the intergalactic magnetic field (IGMF), we predicted that the root mean square of RM through filaments is \sim 1 rad/m^2. Future radio observatories such as the Square Kilometer Array (SKA) could detect this signal level. However, it is known that the typical foreground galactic RM is a few tens and less than ten rad/m^2 in the low and high galactic latitudes, respectively. So the RM in the large-scale structure could be detected only after the foreground galactic RM is removed. In this talk, we show how we remove the foreground galactic RM and what we obtain from the masked data, by using some noise models and masking techniques. Our results can be used to simulate future RM observations by SKA, and eventually to constrain the origin and evolution of the IGMF in the large-scale structure.

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Effects of galaxy-galaxy encounters on galactic spin and central mass distribution

  • Hwang, Jeong-Sun;Park, Changbom
    • 천문학회보
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    • 제43권1호
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    • pp.61.4-62
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    • 2018
  • We use smoothed particle hydrodynamics (SPH) models to study the evolution of galactic spin and the distribution of gas and young stars in the inner region of the galaxies through galaxy encounters. Specifically, we perform numerical simulations of interactions of a late- or an early-type galaxy with either a late- or an early-type galaxy with and without a gas halo at the closest approach distances of 25 and 50 kpc. We find that an early-type galaxy encountering a late-type galaxy have a higher galactic spin and more gas and young stars in the central region of the galaxy after the collision. We are analyzing the role of a gas halo on the changes of galactic spin and central mass distribution during various galaxy-galaxy encounters.

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NEAR-INFRARED PAH FEATURES IN GALACTIC PLANETARY NEBULAE

  • Ohsawa, R.;Onaka, O.;Sakon, I.;Mori, T. I.;Kaneda, H.;Matsuura, M.
    • 천문학논총
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    • 제32권1호
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    • pp.87-91
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    • 2017
  • Polycyclic aromatic hydrocarbons (PAHs) are considered to be carriers of the unidentified infrared bands, which are ubiquitously observed in the Universe. PAHs are mainly formed around evolved carbon-rich stars and injected into interstellar space. Planetary nebulae (PNe), a late stage of low- and intermediate stellar mass evolution, are suitable objects to investigate the formation and evolution of PAHs. The shortest PAH feature is located in $3.3{\mu}m$, which is important to examine the excitation and size distribution of PAHs. While the number of samples had been limited before, the high sensitivity of AKARI /IRC has drastically increased the number of samples. We obtained the $2-5{\mu}m$ spectra of Galactic PNe with AKARI /IRC and compiled a near-infrared spectral catalog, containing 73 PNe. We investigate the detection rate and the evolution of the PAH features. The characteristics of the catalog are illustrated and the origin of the evolution of the PAH features is discussed.

ORIGIN AND EVOLUTION OF STRUCTURE FOR GALAXIES IN THE LOCAL GROUP

  • LAN, NGUYEN QUYNH;MATHEWS, GRANT J.;VINH, NGUYEN ANH;LAM, DOAN DUC
    • 천문학논총
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    • 제30권2호
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    • pp.521-523
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    • 2015
  • The Milky Way did not form in isolation, but is the product of a complex evolution of generations of mergers, collapses, star formation, supernovae and collisional heating, radiative and collisional cooling, and ejected nucleosynthesis. Moreover, all of this occurs in the context of the cosmic expansion, the formation of cosmic filaments, dark-matter haloes, spiral density waves, and emerging dark energy. This paper summarizes a review of recent attempts to reconstruct this complex evolution. We compare simulated properties with various observed properties of the Local Group. Among the generic features of simulated systems is the tendency for galactic halos to form within the dark matter filaments that define a supergalactic plane. Gravitational interaction along this structure leads to a streaming flow toward the two dominant galaxies in the cluster. We analyze this alignment and streaming flow and compare with the observed properties of Local-Group galaxies. Our comparison with Local Group properties suggests that some dwarf galaxies in the Local Group are part of a local streaming flow. These simulations also suggest that a significant fraction of the Galactic halo formed at large distances and arrived later along these streaming flows.

Environmental Dependence of Galactic conformity in the Virgo Cluster

  • Lee, Hye-Ran;Lee, Joon Hyeop;Jeong, Hyunjin;Park, Byeong-Gon
    • 천문학회보
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    • 제40권1호
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    • pp.77.3-78
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    • 2015
  • It is known that the galaxy evolution by direct interaction between galaxies is most active in a galaxy group. As a result, the satellite galaxies are closely related to their central galaxy in properties such as morphology, color and star formation rate (so-called 'galactic conformity'). However, it is not clear yet whether such conformity between galaxies is found in a galaxy cluster. Recently, Lee et al. (2014) have found a measurable correlation between the colors of bright galaxies and the mean colors of their faint companions in a cluster WHL J085910.0+294957 at z = 0.3, using the photometrically-selected cluster members. They suggest that such correlation may be the vestige of infallen groups in the cluster as one possibility. In order to confirm the small-scale conformity in galaxy clusters with higher reliability, we study the Virgo cluster using the Extended Virgo Cluster Catalog (EVCC). The cluster members are selected spectroscopically unlike in WHL J085910.0+294957. We examine the galactic conformity in two distinct areas of the Virgo cluster: the inner X-ray emission region and its outer region. We find a marginal conformity in color (> $2{\sigma}$ significance to bootstrap uncertainty) in the outer region, while no meaningful signal of small-scale conformity is detected in the X-ray emission region. We discuss the implication of this result, focusing on cluster mass assembly and cluster environmental effects on galaxy evolution.

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행성상성운의 분포와 시선속도 연구 (Radial Velocities of Galactic Planetary Nebulae)

  • 허승재;형식
    • 한국지구과학회지
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    • 제26권7호
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    • pp.725-731
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    • 2005
  • 우리은하 속의 행성상성운들의 운동자료를 분석하여, 은하 회전의 운동학적 특성과 진화에 대한 단서를 제공한다. 우리는 THE STRASBOURG-ESO CATALOGUE OF GALACTIC PLANETARY NEBULAE에 주어진 자료 502개를 이용하여 행성상성운의 운동학적 특성을 분석하였다. 은경($\iota$)이 $0^{\circ},\;90^{\circ},\;180^{\circ},\;270^{\circ}$인 4방향과 태양의 향점과 배점의 총 6방향에 대한 특성적인 평균시선속도 $(V_r)s$를 구하였다. 행성상성운들은 향점에서 69.0 km/s로 태양에 접근하고, 배점$(56{\circ},\;236{\circ})$에서 64.1km/s로 멀어지고 있는 경향을 보였다. z 방향으로 행성상성운의 분포를 보면 은하면 아래쪽에 더 많이 분포하지만, 큰 차이는 보이지 않았다. 우리은하에 속한 천체 중 제 3세대인 행성상성운들의 회전속도 성분이 태양에 비해 상대적으로 느림을 알 수 있는데 이는 4세대 별인 태양이 제 3세대 별들과 조우할 수 있음을 암시한다.

The dynamical evolution of very dense star clusters in a very strong tidal field

  • Park, So-Myoung;Goodwin, Simon P.;Kim, Sungsoo S.
    • 천문학회보
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    • 제40권2호
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    • pp.54.2-54.2
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    • 2015
  • Within 100 pc of the Galactic Centre the tidal field is extremely strong. We investigate the survival of star clusters of different masses in strong tidal fields. We show that dense low-mass clusters are destroyed by strong tidal fields as the tidal fields add energy to the cluster. Only massive clusters (like the Arches) can survive for more than 1-2 Myr in strong tidal fields. Therefore, in Galactic Centre environments only massive young clusters should ever be observed.

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