• 제목/요약/키워드: far-ultraviolet

검색결과 131건 처리시간 0.036초

Far-ultraviolet Observations of the Comet C/2001 Q4 (NEAT)

  • 임여명;민경욱
    • 천문학회보
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    • 제35권1호
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    • pp.91.2-91.2
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    • 2010
  • We present far-ultraviolet (FUV) observations of comet C/2001 Q4 (NEAT) obtained with Far-ultraviolet Imaging Spectrograph (FIMS, also called SPEAR) around perihelion between 8 and 15 May 2004. Several important emission lines, including S I (1425, 1474 ${\AA}$), C I (1561, 1657 ${\AA}$), CO (1087.9, 1340-1680 ${\AA}$) were detected. Especially, the spectral features of CO are its electronic transitions belongings to the A-X, C-X systems. We also obtained radial profile of S I, C I, H I $Ly{\beta}$ with line fitting from central coma. The production rate of several spectral lines calculated from observed FUV photon flux. FUV spectral images of S I, C I, H I $Ly{\beta}$ emission lines were obtained.

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초기형 별 방향 성간운의 CO 와 H2 비율 계산 (CO TO H2 RATIO OF INTERSTELLAR MOLECULAR CLOUDS IN THE DIRECTIONS OF EARLY TYPE STARS)

  • 박재우;이대희;민경욱
    • Journal of Astronomy and Space Sciences
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    • 제21권4호
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    • pp.243-248
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    • 2004
  • FUSE(Far Ultraviolet Spectroscopic Explorer)를 이용해 7개의 초기형 별 방향에 존재하는 CO 흡수선을 관측했다. BEFS(Berkeley Extreme and Far-ultraviolet Spectrometer)로 관측한 54개의 초기형 별들 중에서 이번 논문에서는 시선방향으로 1개의 성간운만 존재하는 7개의 별(HD 37903, HD 97991, HD 149881, HD 156110, HD 164794, HD 214080, HD 219188)들을 선택해서 분석했다. CO 분자의 분석을 위해 자외선 영역에서 수소분자의 흡수선에 의해 가려지지 않는 E-X(0-0)($1076{\AA}$) 흡수선이 있는지 확인했으며 그 결과 3개의 별 방향에 존재하는 성간운에 대해서 CO 흡수선이 있는 것을 발견했다. 그 흡수선의 분석을 통해 성간운에 존재하는 CO의 기둥밀도를 구했고, 이번 논문에서의 결과와 이전에 구했던 수소분자의 기둥밀도로부터 CO분자와 수소분자 사이의 비율(CO to $H_2$ ratio)을 계산할 수 있었다.

FUV IMAGING SPECTROSCOPIC OBSERVATIONS OF INTERSTELLAR MEDIUM WITH FIMS

  • SEON KWANG-IL;HAN WONYONG;LEE DAE-HEE;NAM UK-WON;PARK JANG-HYUN;YUK IN-SOO;JIN HO;MIN KYUNG WOOK;RYU KWANG-SUN;EDELSTEIN JERRY;KORPELA ERIC
    • 천문학회지
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    • 제38권2호
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    • pp.69-72
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    • 2005
  • The FIMS (Far-ultraviolet IMaging Spectrograph; also known as SPEAR, Spectroscopy of Plasma Evolution from Astrophysical Radiation) is the primary payload of the STSAT-1, the first Korean science satellite, which was launched in September, 2003. The FIMS performs spectral imaging of diffuse far-ultraviolet emission with the unprecedented wide field of view and the relatively good spectral resolution. We present far-ultraviolet spectral observations of highly ionized interstellar medium including supernova remnants, superbubbles, soft X-ray shadows, and the molecular hydrogen fluorescent emission lines. The FIMS has detected He II, C III, 0 III, O IV, Si IV, O VI, and $H_2$ fluorescent emission lines. The emission lines arise in shocked or thermally heated and in photo-ionized gases. We present an overview of the FIMS instrument and its initial observational results.

KAISTSAT-4 : A Progress Report

  • Gyeong-Uk Min;Gwang-Seon Yu;Dae-Hui Lee;Jin-Geun Lee;Seung-Han O;In-Su Yuk;Gwang-Il Seon;Ho Jin;Jang-Hyeon Park
    • 한국우주과학회:학술대회논문집(한국우주과학회보)
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    • 한국우주과학회 2004년도 한국우주과학회보 제13권1호
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    • pp.51-51
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    • 2004
  • KAISTSAT-4 is to be launched in August 2003 into an orbit at 800 km altitude with the intended mission shared between astrophysics and space physics. The primary objective of its astrophysics mission is to provide spectral sky survey data of hot Galactic plasmas in the far-ultraviolet wavelength range. Far-Ultraviolet Imaging Spectrograph (FIMS) is sensitive to emission line fluxes in 900 - 1175 $\AA$ and 1335 - 1750 $\AA$. (omitted)

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원자외선 분광기(FIMS)의 감도 측정 (SENSITIVITY CALIBRATION OF FAR-ULTRAVIOLET IMAGING SPECTROGRAPH)

  • 김일중;선광일;육인수;남욱원;진호;박장현;유광선;이대희;한원용;민경욱
    • Journal of Astronomy and Space Sciences
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    • 제21권4호
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    • pp.383-390
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    • 2004
  • 2003년 9월에 발사되어 현재 임무수행중인 과학기술위성1호의 주탑재체 원자외선 분광기의 감도측정을 수행하였다. 이를 위하여 2003년 11월부터 2004년 5월의 기간동안 백색왜성 G191B2B와 O형 별인 Alpha-Cam, HD93521을 관측하였으며, 그 관측 데이터와 HUT(Hopkins Ultraviolet Telescope) 데이터를 비교하여 원자외선 분광기의 전 파장영역에 대한 유효면적을 계산하고, 그 결과를 비교 분석하였다.

제주 송이를 이용한 천연염색 면직물의 기능성 연구 (A Study on Function of Natural Dyeing with Cotton Fabrics Using Jeju scoria)

  • 임은숙;이혜선
    • 한국염색가공학회지
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    • 제23권3호
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    • pp.179-186
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    • 2011
  • For the application of Jeju scoria scattered around the island as a natural dye, cotton fabrics were dyed with the dye and their properties were measured including dyeability, colorfastness, antibacterial activity, deodorization efficiency, ultraviolet protection, and far-infrared emission. The dyed cotton fabrics were in yellowish red and optimal dyeing conditions were obtained with a colorant concentration of 25%(o.w.b) at a temperature of $80^{\circ}C$ for the dyeing time of 120 minutes. The ratings of colorfastness to light, rubbing, perspiration, and washing were 8, 5, 5, and 4~5 respectively. After 15 wash cycles, colorfastness remained as much as 4~5 rating. The cotton fabric dyed with Jeju scoria demonstrated excellent antimicrobial activity and deodorization efficiency of 99.9% and 93.9% respectively. Ultraviolet protection factor was 50+. Far-infrared emission rate and far-infrared emission intensity were 90% and 362(W/$m^2{\cdot}{\mu}m$) respectively. The Jeju scoria can be introduced as a new colorant for the natural dyeing of cotton.

Study on the global distribution of far-ultraviolet emission in our Galaxy

  • Jo, Young-Soo;Seon, Kwang-Il;Min, Kyoung-Wook;Edelstein, Jerry
    • 천문학회보
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    • 제40권2호
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    • pp.52.1-52.1
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    • 2015
  • FIMS/SPEAR is a dual-channel far-ultraviolet imaging spectrograph on board the Korean microsatellite STSAT-1, which was launched on 2003 September 27. The primary mission goal of FIMS was to conduct a survey of diffuse far UV emissions in our Galaxy. For this purpose, FIMS completed a survey of about 84% of the sky during its operation of a year and a half. The present study aims to analyze this survey data made in the far UV wavelengths to understand the global evolution of our Galaxy. The far UV wavelength band is known to contain important cooling lines of hot gas: hence, the study will show how the hot gas in our Galaxy, produced by stellar winds and supernova explosion, evolves globally to cool down and become mixed with ambient cooler medium. One of the main findings from previous analyses of the FIMS data is that molecular hydrogen exists ubiquitously in our Galaxy. This discovery leads to another important scientific question: how is molecular hydrogen distributed in our Galaxy and how does it affect globally the evolution of our Galaxy as a cold component? Hence, the present study will cover both the hot and cold components of the ISM, which will also provide the opportunity to investigate the interactions between the two.

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