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首页> 外文期刊>The Astrophysical journal >MODELING THE HEATING AND COOLING OF WZ SAGITTAE FOLLOWING THE 2001 JULY OUTBURST
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MODELING THE HEATING AND COOLING OF WZ SAGITTAE FOLLOWING THE 2001 JULY OUTBURST

机译:在2001年7月爆发之后模拟WZ SAGITTAE的加热和冷却

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Far Ultraviolet Spectroscopic Explorer and Hubble Space Telescope Space Telescope Imaging Spectograph spectra of the dwarf nova WZ Sge, obtained during and following the early superoutburst of 2001 July over a time span of 20 months, monitor changes in the components of the system during its different phases. The synthetic spectral fits to the data indicate a cooling in response to the outburst of about 12,000 K, from ≈28,000 down to ≈16, 000 K. The cooling timescale τ (of the white dwarf temperature excess) is on the order of ≈100 days in the early phase of the cooling period, and increases to τ ≈ 850 days toward the end of the second year following the outburst. In the present work, we numerically model the accretional heating and subsequent cooling of the accreting white dwarf in WZ Sge. The best compressional heating model fit is obtained for a 1.2 solar mass white dwarf accreting at a rate of 9 x 10~(-9) solar mass yr~(-1) for 52 days. However, if one assumes a lower mass accretion rate or a lower white dwarf mass, then compressional heating alone cannot account for the observed temperature decline, and other sources of heating have to be included to increase the temperature of the model to the observed value. We quantitatively check the effect of boundary layer irradiation as such an additional source.
机译:矮新星WZ Sge的远紫外光谱探测器和哈勃太空望远镜成像光谱图,在20个月的时间段内(在2001年7月的早期爆发期间和之后)获得,监视时间为20个月,该系统各阶段的变化。对数据的合成光谱拟合表明,响应于大约12,000 K的爆发而从约28,000降到了≈16,000 K时冷却了。冷却时间标度τ(白矮星温度过高)约为100。降温期的初期天数,在爆发后的第二年末增加到τ≈850天。在目前的工作中,我们对WZ Sge中积聚的白矮星的增生加热和随后的冷却进行数值模拟。对于以1.2 x太阳质量的白矮星以9 x 10〜(-9)太阳质量yr〜(-1)的速率分泌52天,获得了最佳的压缩加热模型拟合。但是,如果假设质量增加率较低或白矮星质量较低,则仅靠压缩加热不能解决观测到的温度下降,必须包括其他加热源才能将模型温度提高到观测值。我们定量检查边界层辐照的影响,以此作为额外的来源。

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