论文标题
结构化GRB射流的三维数值模拟
Three-dimensional numerical simulations of structured GRB jets
论文作者
论文摘要
在发现GRB 170817a之后,第一个明确的离轴伽马射线爆发(GRB),几项研究试图了解GRB喷射的结构。可以部分保存初始的射流结构(由中央发动机直接产生),也可以通过与环境的相互作用来完全修改。在这项研究中,我们对通过庞大的祖细胞恒星进化的长GRB喷气式的三维特殊相对论水动力学模拟。考虑了不同的喷气场景:顶部帽子,高斯喷气机以压力或动能为主导,以及超新星(SN)的模型以及均通过祖细胞传播的射流。我们发现,在祖细胞恒星内传播,具有不同初始结构的喷射几乎是无法区分的。动力学主导的喷射速度比压力主导的喷气机更快,更准确。祖细胞恒星内的喷气机的动力学很大程度上取决于相关的SN的存在,这可能会大大减速射流传播。我们表明,是否保留了GRB喷气机的初始结构,或者主要取决于射流准则。初始结构保存在未填充的喷气机中,即穿过低密度环境的喷气机。同时,通过密集环境移动的喷射是由与介质的相互作用并保持准直的。
After the detection of GRB 170817A, the first unambiguous off-axis gamma-ray burst (GRB), several studies tried to understand the structure of GRB jets. The initial jet structure (directly produced by the central engine) can be partially preserved, or can be completely modified by the interaction with the environment. In this study, we perform three-dimensional, special relativistic hydrodynamics simulations of long GRB jets evolving through a massive progenitor star. Different jet scenarios were considered: Top-hat, Gaussian jets dominated by pressure or by kinetic energy, as well as a model of a supernova (SN) plus a jet both propagating through the progenitor. We found that, while propagating inside the progenitor star, jets with different initial structures are nearly indistinguishable. Kinetic dominated jets are faster and more collimated than pressure dominated jets. The dynamics of jets inside the progenitor star strongly depends on the presence of an associated SN, which can substantially decelerate the jet propagation. We show that the initial structure of GRB jets is preserved, or not, mainly depending on the jet collimation. The initial structure is preserved in uncollimated jets, i.e. jets which move through low density environments. Meanwhile, jets which move through dense environments are shaped by the interaction with the medium and remain collimated.