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PHYSICAL PARAMETERS OF GRB 970508 AND GRB 971214 FROM THEIR AFTERGLOW SYNCHROTRON EMISSION

机译:GRB 970508和GRB 971214来自其后同步同步辐射的物理参数

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We have calculated synchrotron spectra of relativistic blast waves and find predicted characteristic frequencies that are more than an order of magnitude different from previous calculations. For the case of an adiabatically expanding blast wave, which is applicable to observed gamma-ray burst (GRB) after- glows at late times, we give expressions to infer the physical properties of the afterglow from the mea- sured spectral features. We show that enough data exist for GRB 970508 to compute unambiguously the ambient density, n = 0.03 cm~(-3), and the blast wave energy per unit solid angle, E = 3 x 10~52 ergs/4#pi# sr. We also compute the energy density in electrons and magnetic field. We find that they are 12 and 9, respectively, of the nucleon energy density and thus confirm for the first time that both are close to but below equipartition. For GRB 971214, we discuss the break found in its spectrum by Ramaprakash et al. It can be interpreted either as the peak frequency or as the cooling frequency, both interpretations have some problems, but on balance the break is more likely to be the cooling frequency. Even when we assume this, our ignorance of the selfabsorption frequency and presence or absence of beaming make it impossible to constrain the physical parameters of GRB 971214 very well.
机译:我们已经计算了相对论爆炸波的同步加速器频谱,并发现预测的特征频率与先前的计算相差一个数量级。对于绝热扩展的爆炸波(适用于在较晚时间观察到的伽马射线爆裂(GRB)余辉)的情况,我们给出了从所测得的光谱特征推断余辉的物理特性的表达式。我们显示,存在足够的数据供GRB 970508明确计算环境密度n = 0.03 cm〜(-3),以及单位立体角的爆炸波能量E = 3 x 10〜52 ergs / 4#pi#sr 。我们还计算电子和磁场中的能量密度。我们发现它们分别是核子能量密度的12和9,因此首次确认两者均接近但低于均分。对于GRB 971214,我们讨论了Ramaprakash等人在其频谱中发现的断裂。可以将其解释为峰值频率或冷却频率,两种解释都有一些问题,但总的来说,折断更可能是冷却频率。即使我们假设这样做,我们对自吸收频率的无知以及是否存在波束也无法很好地约束GRB 971214的物理参数。

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