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Supernova Blastwaves in Low-density Hot Media: a Mechanism for Spatially Distributed Heating

机译:低密度热介质中的超新星爆炸波:一种空间分布加热的机制

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摘要

Most supernovae are expected to explode in low-density hot media, particularly in galactic bulges and elliptical galaxies. The remnants of such supernovae, though difficult to detect individually, can be profoundly important in heating the media on large scales. We characterize the evolution of this kind of supernova remnants, based on analytical approximations and hydrodynamic simulations. We generalize the standard Sedov solution to account for both temperature and density effects of the ambient media. Although cooling can be neglected, the expansion of such a remnant deviates quickly from the standard Sedov solution and asymptotically approaches the ambient sound speed as the swept-up thermal energy becomes important. The relatively steady and fast expansion of the remnants over large volumes provides an ideal mechanism for spatially distributed heating, which may help to alleviate the over-cooling problem of hot gas in groups and clusters of galaxies as well as in galaxies themselves. The simulations were performed with the FLASH code.
机译:预计大多数超新星会在低密度热介质中爆炸,特别是在银河凸起和椭圆星系中。这种超新星的残留物虽然很难单独检测,但在大规模加热介质中可能具有极其重要的意义。基于解析逼近和流体动力学模拟,我们表征了这种超新星残余的演化。我们对标准Sedov解决方案进行一般化,以考虑环境介质的温度和密度影响。尽管冷却可以忽略不计,但这种残留的膨胀会迅速偏离标准的Sedov解决方案,并且随着扫掠的热能变得越来越重要,渐近地接近环境声速。残余物在较大体积上的相对稳定和快速膨胀为空间分布加热提供了理想的机制,这可能有助于减轻星系组和星系团以及星系本身中的热气过冷问题。仿真是用FLASH代码执行的。

著录项

  • 作者

    Tang, S; Wang, Q D;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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