• 제목/요약/키워드: Hipparcos

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A likely exoplanet around F5 supergiant ${\alpha}$ Persei near the Cepheid instability strip

  • 이병철;한인우;박명구;김강민
    • 천문학회보
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    • 제36권1호
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    • pp.28.2-28.2
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    • 2011
  • To search for and study the nature of the long-periodic variations of massive stars, we have been carrying out a precise radial velocity (RV) survey for supergiants. Here, we present high-resolution RV measurements of ${\alpha}$ Per which lies near the Cepheid instability strip from November 2005 to February 2011 using the fiber-fed Bohyunsan Observatory Echelle Spectrograph (BOES) at Bohyunsan Optical Astronomy Observatory (BOAO). The orbital solution yields a period of 129 days, a 2K amplitude of 80 m/s, and an eccentricity of 0.1. Assuming a possible stellar mass of 7.3 $M{\bigodot}$, we estimate the minimum mass for the planetary companion to be 7.5 MJup with the orbital semi-major axis of 0.97 AU. We do not find the correlation between RV variations and chromospheric activity indicator (Ca II H & K region). The Hipparcos photometry and bisector velocity span (BVS) do not show any obvious correlations with RV variations. These analyses suggest that ${\alpha}$ Per is a pulsating supergiant that hosts an exoplanet. If the 129 days variations of ${\alpha}$ Per do not come from an exoplanet but Cepheid-like pulsations, the theoretical boundary of the Cepheid instability strip may need to be extended to the bluer side.

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Dust Scattering Simulation in Taurus-Auriga-Perseus(TPA) Complex

  • 임태호;선광일;민경욱
    • 천문학회보
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    • 제36권1호
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    • pp.88.1-88.1
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    • 2011
  • We present the FIMS/SPEAR FUV continuum map of The Taurus - Auriga - Perseus (TPA) complex, which is one of the largest local association of dark clouds located in (l,b)~([152,180],[-28,0]). We also present the result of FUV dust scattering simulation, which is based on Monte Carlo Radiative Transfer(MCRT) technique. Before the simulation we generate the model cloud using Hipparcos 77834 stars and the calculation of their E(B-V). From the density-integrated image and the cross section image of the modeled cloud we confirmed that the Taurus cloud is located in ~130pc. The cloud north of the California nebula is known for its two layered structure and we confirm that using the cross section image of the modeled cloud. In our modeled cloud, that two clouds are located at ~130pc and at ~300pc, respectively. Over the whole region the result image of simulation is well correlated with the diffuse FUV observed with FIMS/SPEAR. The dense core of the Taurus cloud, however, is not revealed completely in the map.

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구상성단 M71의 BV CCD 측광: 거리 그리고 나이 (BV CCD PHOTOMETRY OF M71: DISTANCE AND AGE)

  • 임홍서;천문석;변용익;손영종
    • Journal of Astronomy and Space Sciences
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    • 제21권1호
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    • pp.1-10
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    • 2004
  • 이 논문에서는 우리 은하 구상 성단 M7l에 대한 B, V CCD 영상 관측 자료로부터 색-등급도(color-magnitude diagram)를 구하고, 이로부터 이 성단의 거리와 상대적 나이를 결정하였다. M7l의 적색화 현상(E(B - V) = 0.28)과 금속함량(-0.79 < 〔Fe/H〕 < -0.70)은 최근 논문의 값을 채택하였다 이 자료를 토대로 관측으로부터 얻은 M71 색등급도의 기준선을 Hipparcos준왜성의 측광 특성과 비교하여 M71의 거리지수를 (m- M)v = 13.46(${\pm}0.17$)과 같이 결정하였다. 비슷한 금속 함량을 가지는 구상 성단47 Tuc의 색등급도를 이 연구에서 구한M71의 색등급도와 비교한 결과 두 성단의 나이는 상당한 차이가 있음을 확인할 수 있었고, isochrone과의 비교 결과 적어도 20억년 이상의 차이가 존재한다는 사실을 알 수 있었다.

A Search for Exoplanets around Northern Circumpolar Stars. VII. Detection of Planetary Companion Orbiting the Largest Host Star HD 18438

  • Byeong-Cheol Lee;Jae-Rim Koo;Gwanghui Jeong;Myeong-Gu Park;Inwoo Han;Yeon-Ho Choi
    • 천문학회지
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    • 제56권1호
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    • pp.35-40
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    • 2023
  • We have been conducting a exoplanet search survey using Bohyunsan Observatory Echelle Spectrograph (BOES) for the last 18 years. We present the detection of exoplanet candidate in orbit around HD 18438 from high-precision radial velocity (RV) mesurements. The target was already reported in 2018 (Bang et al. 2018). They conclude that the RV variations with a period of 719 days are likely to be caused by the pulsations because the Lomb-Scargle periodogram of HIPPARCOS photometric and Hα EW variations for HD 18438 show peaks with periods close to that of RV variations and there were no correlations between bisectors and RV measurements. However, the data were not sufficient to reach a firm conclusion. We obtained more RV data for four years. The longer time baseline yields a more accurate determination with a revised period of 803 ± 5 days and the planetary origin of RV variations with a minimum planetary companion mass of 21 ± 1 MJup. Our current estimate of the stellar parameters for HD 18438 makes it currently the largest star with a planetary companion.

Dust scattering simulation of far-ultraviolet light in the Milky Way

  • Jo, Young-Soo;Seon, Kwang-Il;Min, Kyoung-Wook;Jeong, Woong-Seob;Witt, Adolf N.
    • 천문학회보
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    • 제46권1호
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    • pp.57.3-58
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    • 2021
  • We performed three-dimensional Monte Carlo dust scattering radiative transfer simulations for FUV light to obtain dust scattered FUV images and compared them with the observed FUV image obtained by FIMS/SPEAR and GALEX. From this, we find the scattering properties of interstellar dust in our Galaxy and suggest the intensity of extragalactic background light (EBL) at FUV wavelength. The best-fit values of the scattering properties of interstellar dust are albedo = 0.38-0.04+0.04, g-factor = 0.55-0.15+0.10, and EBL = 138-23+21 CU for the allsky which are consistent well with the Milky Way dust model of Draine and direct measurements of Gardner et al., respectively. At the high Galactic latitude of |b|>10°, the observation is well fitted with the model of lower albedo = 0.35-0.04+0.06 and g-factor = 0.50-0.20+0.15. On the contrary, the scattering properties of interstellar dust show higher albedo = 0.43-0.02+0.02 and g-factor = 0.65-0.15+0.05 near the Galactic plane of |b|<10°. In the present simulation, recent three-dimensional distribution maps of interstellar dust in our Galaxy, stellar distances in the catalog of GAIA DR2, and FUV fluxes and/or spectral types in the TD-1 and Hipparcos star catalogs were used.

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