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首页> 外文期刊>The Astrophysical journal >GAMMA-RAY BURST CLASS PROPERTIES
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GAMMA-RAY BURST CLASS PROPERTIES

机译:GAMMA-RAY BURST CLASS属性

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Guided by the supervised pattern recognition algorithm C4.5 developed by Quinlan in 1986, we examine the three gamma-ray burst classes identified by Mukherjee et al. in 1998. C4.5 provides strong statistical support for this classification. However, with C4.5 and our knowledge of the BATSE instrument, we demonstrate that class 3 (intermediate fluence, intermediate duration, soft) does not have to be a distinct source population: statistical/systematic errors in measuring burst attributes combined with the well-known hardness/intensity correlation can cause low peak flux class 1 (high fluence, long, intermediate hardness) bursts to take on class 3 characteristics naturally. Based on our hypothesis that the third class is not a distinct one, we provide rules so that future events can be placed in either class 1 or class 2 (low fluence, short, hard). We find that the two classes are relatively distinct on the basis of Band's work in 1993 on spectral parameters α, β, and E_(peak) alone. Although this does not indicate a better basis for classification, it does suggest that different physical conditions exist for class 1 and class 2 bursts. In the process of studying burst class characteristics, we identify a new bias affecting burst fluence and duration measurements. Using a simple model of how burst duration can be underestimated, we show how this fluence duration bias can affect BATSE measurements and demonstrate the type of x effect it can have on the BATSE fluence versus peak flux diagram.
机译:在Quinlan于1986年开发的监督模式识别算法C4.5的指导下,我们研究了Mukherjee等人确定的三种伽马射线爆发类。 1998年。C4.5为该分类提供了有力的统计支持。但是,借助C4.5和我们对BATSE仪器的了解,我们证明了3类(中级通量,中级持续时间,软性)不必是不同的来源群体:在测量爆破属性与油井结合时的统计/系统误差已知的硬度/强度相关性可能导致低峰值通量1级(高通量,长硬度,中等硬度)爆发自然地具有3级特性。基于我们的假设,即第三类不是截然不同的类,我们提供了规则,以便将来的事件可以放在第一类或第二类中(低通量,简短,困难)。我们发现,根据Band于1993年仅在光谱参数α,β和E_(peak)上的工作,这两个类别相对不同。尽管这并不能为分类提供更好的依据,但它确实表明1级和2级突发存在不同的物理条件。在研究突发类特征的过程中,我们确定了影响突发通量和持续时间测量的新偏差。通过使用一个简单的模型,该模型可以低估突发持续时间,我们展示了这种通量持续时间偏差如何影响BATSE测量,并展示了其对BATSE通量与峰值通量图的x效应类型。

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