论文标题
伽马射线的时间和光谱演变爆发宽脉冲:及时发射中高纬度发射的识别
Temporal and Spectral Evolution of Gamma-ray Burst Broad Pulses: Identification of High Latitude Emission in the Prompt Emission
论文作者
论文摘要
我们对明亮的伽马射线爆发(GRB)中的宽脉冲进行详细分析,以了解GRB宽脉冲的演变。使用时间和光谱特性,我们在宽脉冲的衰减阶段测试了高纬度发射(HLE)方案。 HLE起源于相对论球射流的曲率效应,该速率比观察者的视线发射延迟且较高的纬度光子延迟且较软。在GRB迅速排放期间,尚未确定HLE的签名。 HLE理论可以预测特定关系,F $ _ {ν,E_ {p}} $ $ \ propto $ e $ e $ _ {p} \! e_ {p}} $。我们在2008年至2017年的Fermi Gamma-ray空间望远镜(Fermi)上搜索2157 GRB中的这种关系证据。在施加无偏见的选择标准之后,我们将脉冲puls的背景和重叠量最小化。我们对这32个宽脉冲进行了时间分辨的光谱分析,发现18种脉冲的演变(56%)显然与HLE关系一致。对于18个广泛的脉冲,指数$δ$在f $ _ {ν,e_ {p}} $ $ \ propto $ e $ e $ _ {p} \!^δ$的关系中分别以1.99和0.34的宽度分布。该结果为具有HLE签名的GRB的发射半径提供了约束。
We perform a detailed analysis on broad pulses in bright Gamma-ray bursts (GRBs) to understand the evolution of GRB broad pulses. Using the temporal and spectral properties, we test the high latitude emission (HLE) scenario in the decaying phase of broad pulses. The HLE originates from the curvature effect of a relativistic spherical jet, where higher latitude photons are delayed and softer than the observer's line-of-sight emission. The signature of HLE has not yet been identified undisputedly during the prompt emission of GRBs. The HLE theory predicts a specific relation, F$_{ν, E_{p}}$ $\propto$ E$_{p}\!^{2}$, between the peak energy $E_{p}$ in $ν$F$_ν$ spectra and the spectral flux F$_ν$ measured at $E_{p}$, F$_{ν, E_{p}}$. We search for evidence of this relation in 2157 GRBs detected by the Gamma-ray Burst Monitor (GBM) on board the Fermi Gamma-ray Space Telescope (Fermi) from the years 2008 to 2017. After imposing unbiased selection criteria in order to minimize contamination in a signal by background and overlaps of pulses, we build a sample of 32 broad pulses in 32 GRBs. We perform a time-resolved spectral analysis on each of these 32 broad pulses and find that the evolution of 18 pulses (56%) is clearly consistent with the HLE relation. For the 18 broad pulses, the exponent $δ$ in the relation of F$_{ν, E_{p}}$ $\propto$ E$_{p}\!^δ$ is distributed as a Gaussian function with median and width of 1.99 and 0.34, respectively. This result provides constraint on the emission radius of GRBs with the HLE signature.