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The delay time distribution of massive double compact star mergers

机译:大规模双紧凑星合并的延迟时间分布

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摘要

To investigate the temporal evolution of binary populations, in general, and double compact-star binaries and mergers, in particular, within a galactic evolution context, a very straightforward method is obviously to implement a detailed binary evolutionary model in a galactic chemical evolution code. To our knowledge, the Brussels galactic chemical evolution code is the only one that fully and consistently accounts for the important effects of interacting binaries on the predictions of chemical evolution. With a galactic code that does not explicitly include binaries, the temporal evolution of the population of double compact star binaries and mergers can be estimated with reasonable accuracy if the delay time distribution (DTD) for these mergers is available. The DTD for supernovae type Ia has been studied extensively in the past decade. In the present paper we present the DTD for merging double neutron-star binaries and mixed systems consisting of a neutron star and a black hole. The latter mergers are very promising sites for producing r -process elements, and the DTDs can be used to study the galactic evolution of these elements with a code that does not explicitly account for binaries.
机译:通常,要研究二元种群的时间演化,尤其是在星系演化的背景下研究双紧凑星双星和合并,一种非常简单的方法显然是在星系化学演化代码中实现详细的二元演化模型。据我们所知,布鲁塞尔银河系化学演化代码是唯一一个完全一致地解释相互作用的二元对化学演化预测的重要影响的代码。如果没有明确包含双星的银河代码,则如果可以获得这些紧凑双星双星和合并的延迟时间分布(DTD),则可以以合理的准确性估算其种群的时间演化。在过去的十年中,对Ia型超新星的DTD进行了广泛的研究。在本文中,我们提出了用于合并双中子星双星和由中子星和黑洞组成的混合系统的DTD。后者的合并是产生r进程元素的非常有前途的站点,并且DTD可以用于研究这些元素的星系演化,而无需明确说明二进制代码。

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