Signatures of helical jets

W. Steffen
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引用次数: 7

Abstract

Observational signatures of helical jets can be found in some X-ray binaries (XRB), planetary nebulae, Herbig-Haro objects and in jets of active galactic nuclei (AGN). For example, in the XRB SS433 a kinematic model of precessing jets has been applied very successfully and yielded a determination of its distance which is independent of conventional methods. In galactic jets precession appears to be the predominant mechanism for the production of observed helical signatures. In extra-galactic jets other mechanisms seem to be similarly frequent. As a result of their strong dependence on the direction of motion with respect to the observer, special relativistic effects can be pronounced in helical jets. These have to be taken into account in AGN-jets and the newly discovered galactic sources which show apparent superluminal motion. Since the galactic superluminal jets are located in a binary system, jet precession is very likely in these sources. In this paper I review the main structural and kinematic signatures of helical jets and briefly mention the physical mechanisms behind them. I will present kinematic simulations of relativistic jets which are helically bent or have an internal helical flow field.

螺旋射流的特征
螺旋喷流的观测特征可以在一些x射线双星(XRB)、行星状星云、赫比格-哈罗天体和活动星系核(AGN)的喷流中找到。例如,在XRB SS433中,加工射流的运动学模型已经非常成功地应用,并产生了独立于常规方法的距离确定。在星系喷流中,进动似乎是产生观测到的螺旋特征的主要机制。在星系外的喷流中,其他机制似乎也同样频繁。由于它们与运动方向相对于观察者的强烈依赖,在螺旋射流中可以明显地看到狭义相对论效应。在agn喷流和新发现的星系源中必须考虑到这些,这些星系源显示出明显的超光速运动。由于银河系的超光速喷流位于双星系统中,因此在这些源中很可能存在喷流进动。本文综述了螺旋射流的主要结构和运动特征,并简要介绍了其背后的物理机制。我将介绍具有螺旋弯曲或内部螺旋流场的相对论性射流的运动学模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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