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An investigation into the fraction of particle accelerators among colliding-wind binaries. Towards an extension of the catalogue

机译:对碰撞风二进制中粒子加速器的分数的研究。迈向目录的扩展

摘要

Particle-accelerating colliding-wind binaries (PACWBs) are multiple systems made of early-type stars able to accelerate particles up to relativistic velocities. The relativistic particles can interact with different fields (magnetic or radiation) in the colliding-wind region and produce non-thermal emission. In many cases, non-thermal synchrotron radiation might be observable and thus constitute an indicator of the existence of a relativistic particle population in these multiple systems. To date, the catalogue of PACWBs includes about 40 objects spread over many stellar types and evolutionary stages, with no clear trend pointing to privileged subclasses of objects likely to accelerate particles. This paper aims at discussing critically some criteria for selecting new candidates among massive binaries. The subsequent search for non-thermal radiation in these objects is expected to lead to new detections of particle accelerators. On the basis of this discussion, some broad ideas for observation strategies are formulated. At this stage of the investigation of PACWBs, there is no clear reason to consider particle acceleration in massive binaries as an anomaly or even as a rare phenomenon. We therefore consider that several PACWBs will be detected in the forthcoming years, essentially using sensitive radio interferometers which are capable of measuring synchrotron emission from colliding-wind binaries. Prospects for high-energy detections are also briefly addressed.
机译:粒子加速碰撞风双星(PACWB)是由早期类型的恒星组成的多个系统,能够将粒子加速到相对论速度。相对论粒子可以与碰撞风区域中的不同场(磁场或辐射)相互作用,并产生非热辐射。在许多情况下,非热同步加速器辐射可能是可观察到的,因此构成这些多个系统中相对论粒子群存在的指标。迄今为止,PACWBs的目录包括分布在许多恒星类型和演化阶段的约40个物体,没有明确的趋势指向可能加速粒子的物体的特权子类。本文旨在批判性地讨论在大量二进制文件中选择新候选文件的一些标准。随后在这些物体中寻找非热辐射的方法有望导致对粒子加速器的新发现。在此讨论的基础上,提出了一些广泛的观测策略构想。在PACWBs研究的现阶段,没有明确的理由将大规模二进制文件中的粒子加速视为异常甚至罕见现象。因此,我们认为在未来几年中将主要使用敏感的无线电干涉仪检测到几种PACWB,这些干涉仪能够测量碰撞风二进制文件的同步辐射。还简要介绍了高能检测的前景。

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