E. M. Urvachev, D. S. Shidlovski, S. I. Blinnikov, S. I. Glazyrin
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引用次数: 0
摘要
摘要当光束进入以散射为主的介质时,辐射会被等向化。部分辐射向后移动,导致该介质内部的辐射能量密度曲线不单调。在散射反照率 \({\sim}1\)下的能量密度比相同消光条件下无散射时的能量密度大几倍。我们在一维和二维模拟中对这种效应进行了数值研究。结果表明,介质中会出现辐射能量密度的局部最大值,其值取决于该区域的光学深度。例如,当伽马射线暴(GRB)的辐射进入星际介质中的加热区域时,这种效应就会显现出来。在伽马射线暴辐射产生区域,靠近强冲击波前沿的散射会影响辐射模式。这种冲击的结构因存在冲击前预热尾部而引人注目。该区域的强散射导致相当一部分辐射在冲击参照系中横向和向后逃逸,在相对论转换到实验室参照系后,在 GRB 辐射的角度分布中形成额外的尾巴。在三维模拟中也对这种效应进行了数值研究。
Strong Scattering Effects in the Emission of Soft Gamma-Ray Bursts
When a light beam enters a scattering-dominated medium, the radiation is isotropized. Part of the radiation goes backwards, leading to non-monotonicity in the radiation energy density profile inside this medium. There arises a local maximum at which the energy density at a scattering albedo \({\sim}1\) is severalfold greater than that without scattering at the same extinction. This effect is studied numerically in one-dimensional and two-dimensional simulations. It is demonstrated that a local maximum of the radiation energy density arises in the medium, whose value depends on the optical depth of the region. This effect can manifest itself, for example, when the radiation from a gamma-ray burst (GRB) enters heated regions in the interstellar medium. The presence of scattering in the GRB radiation generation region, near the front of strong shocks, affects the radiation pattern. The structure of such shocks is remarkable for the presence of a preshock preheating tail. Strong scattering in this region leads to the escape of a significant fraction of the radiation sideways and backwards in the shock reference frame, forming additional tails in the angular distribution of GRB radiation after the relativistic transformation to the laboratory frame. This effect is also studied numerically in three-dimensional simulations.
期刊介绍:
Astronomy Letters is an international peer reviewed journal that publishes the results of original research on all aspects of modern astronomy and astrophysics including high energy astrophysics, cosmology, space astronomy, theoretical astrophysics, radio astronomy, extragalactic astronomy, stellar astronomy, and investigation of the Solar system.