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Detection and interpretation of γ-ray emission from SNIa

机译:SNIa的γ射线发射的检测和解释

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The explosion mechanism associated with thermonuclear supernovae (SNIa) is still a matter of debate. Nevertheless, there is a wide agreement that large amounts of radioactive nuclei are produced during these events, which are expected to be strong γ-ray emitters. In this paper we investigate the usability of these γ-rays as a diagnostic tool. For this purpose we studied the variety of γ-ray spectra associated with the different currently-proposed SNIa explosion scenarios: detonation, deflagration, delayed detonation, and pulsating delayed detonation. Our study demonstrates that γ-ray emission from SNIa is indeed a promising tool, although care must be taken to avoid misinterpretations. We also show that 3D effects can be relevant. They can provide important information about the exploding system and the thermonuclear burning front mechanism if sufficiently-high resolution spectra can be obtained.
机译:与热核超新星(SNIa)有关的爆炸机制仍是一个有争议的问题。尽管如此,人们广泛同意在这些事件中会产生大量的放射性核,这些放射性核有望成为强的γ射线发射器。在本文中,我们研究了这些γ射线作为诊断工具的可用性。为此,我们研究了与当前提出的不同SNIa爆炸场景相关的各种γ射线光谱:起爆,爆燃,延迟爆震和脉冲延迟爆震。我们的研究表明,尽管必须注意避免误解,但从SNIa发出的γ射线确实是有前途的工具。我们还显示了3D效果可能是相关的。如果可以获得足够高分辨率的光谱,它们可以提供有关爆炸系统和热核燃烧前沿机制的重要信息。

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