论文标题
由辐射驱动的结构化的相对论喷气机
Structured, relativistic jets driven by radiation
论文作者
论文摘要
相对论的喷气机或高度直接且快速移动的流出是许多天体物理现象的特有的。由伽马射线爆发和潮汐破坏事件产生的喷气机伴随着材料在黑洞或中子恒星上的积聚,其积聚速率超过了密切物体的Eddington限制。在这样的系统中,辐射主导了流出的能量摩托车预算,并且射流的动力学演化受辐射流体动力学方程的控制。在这里,我们表明,在粘性(即扩散)方程中,有一些分析解决方案描述了结构化的,相对论的JET,它们由快速移动的,高度相对论的核心组成,被较慢的移动,相对论性的鞘更少。在这些溶液中,移动较慢的外壳包含大部分质量,并且射流结构是由辐射场中局部各向异性介导的。我们表明,根据环境介质的压力和密度分布,射流洛伦兹因子的角度曲线是高斯,或者以角度更陡峭地掉落。这些解决方案对超晶系统中喷气生产和进化的性质具有影响,并证明这种喷气机以及相应的喷气结构可以完全通过辐射过程来维持。我们讨论了这些发现的含义,在喷气式潮汐破坏事件以及短而长的伽马射线爆发的背景下。
Relativistic jets, or highly collimated and fast-moving outflows, are endemic to many astrophysical phenomena. The jets produced by gamma-ray bursts and tidal disruption events are accompanied by the accretion of material onto a black hole or neutron star, with the accretion rate exceeding the Eddington limit of the compact object by orders of magnitude. In such systems, radiation dominates the energy-momentum budget of the outflow, and the dynamical evolution of the jet is governed by the equations of radiation hydrodynamics. Here we show that there are analytic solutions to the equations of radiation hydrodynamics in the viscous (i.e., diffusive) regime that describe structured, relativistic jets, which consist of a fast-moving, highly relativistic core surrounded by a slower-moving, less relativistic sheath. In these solutions, the slower-moving, outer sheath contains most of the mass, and the jet structure is mediated by local anisotropies in the radiation field. We show that, depending on the pressure and density profile of the ambient medium, the angular profile of the jet Lorentz factor is Gaussian or falls off even more steeply with angle. These solutions have implications for the nature of jet production and evolution in hyperaccreting systems, and demonstrate that such jets -- and the corresponding jet structure -- can be sustained entirely by radiative processes. We discuss the implications of these findings in the context of jetted tidal disruption events and short and long gamma-ray bursts.