• 제목/요약/키워드: planetary nebula

검색결과 47건 처리시간 0.022초

The Spectra Investigation of the Halo Planetary Nebula BoBn 1

  • Hyung, Siek;Otsuka, Masaaki;Tajitsu, Akito;Izumiura, Hideyuki
    • 천문학회보
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    • 제35권2호
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    • pp.72.2-72.2
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    • 2010
  • The extremely metal-poor halo planetary nebula BoBn 1 has been investigated based on IUE archive data, Subaru/HDS spectra, VLT/UVES archive data, and Spitzer/IRS spectra. We have measured a heliocentric radial velocity of $+191.6\pm1.3\;kms^{-1}$ and expansion velocity 2Vexp of $40.5\pm3.3\;kms^{-1}$ from an average over 300 lines. The estimations of C, N, O, and Ne abundances from the optical recombination lines (ORLs) and Kr, Xe, and Ba from the collisional excitation lines (CELs) are also done. We have detected 5 fluorine and several slow neutron capture elements (the s-process). The amounts of [F/H], [Kr/H], and [Xe/H] suggest that BoBn 1 is the most F-rich among F detected PNe and is a heavy s-process element rich PN. The photo-ionization models built with non-LTE theoretical stellar atmospheres indicate that the progenitor was a 1-1.5 $M_\bigstar$ that would evolve into a white dwarf with an $0.62M_{\odot}$ core mass and $0.09M_{\odot}$ ionized nebula. Careful examination implies that BoBn 1 has evolved from a binary and experienced coalescence during the evolution to become a visible PN. The elemental abundances except N could be explained by a binary model composed of $0.75M_{\odot}+1.5M_{\odot}$ stars.

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High resolution Infrared spectroscopy of Planetary Nebula with IGRINS

  • Yu, Young Sam
    • 천문학회보
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    • 제39권2호
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    • pp.93.2-93.2
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    • 2014
  • Planetary nebulae (PN) are the last stages of evolution of intermediate mass (1-8 Msolar) stars. Their shapes are thought to result from interactions between the present-day, fast (emerging white dwarf) and previously ejected, slow (red giant) stellar winds. The observation of young, bright PN, NGC7027 and BD+30 3639, was made on July 7, 2014 using the 2.7m Harlan J. Smith telescope at the McDonald Observatory. IGRINS with high spatial (0.27") and high spectral ($7.5km\;s^{-1}$) resolution will provide more nebular lines and excitation/abundances to constrain the morphology and kinematics of the Nebula and the PDRs. Combined with other archival data (X-ray, 2MASS, WISE, Spitzer, Herschel) for PN, high-resolution IR spectroscopy will yield insight into poorly understood aspects of PN morphologies and the late stages of binary star 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.