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Magnetic Pumping in accretion disk coronae

机译:磁性泵送在吸收盘coronae

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摘要

Most microquasar models involve a hot plasma in a corona above the disk or at the base of the jet. The Accretion-Ejection Instability (AEI) occurring in magnetized disks leads to the growth of a spiral density wave which can explain low frequency QPOs. It has already been shown to be very efficient in extracting accretion energy from the disk and emitting it upward in the corona as Alfvén waves. Here we present a simple mechanism which also allows the AEI to excite coronal ions. This hearing is due to magnetic pumping, i.e. a resonant process occurring as the magnetic field lines emerging from the disk are periodically compressed by the spiral wave. We show how it acts on a collisionless population of ions, trapped above the disk by the joint action of gravity and magnetic stresses. We discuss the efficiency of this mechanism in heating coronal particles.
机译:大多数微级型模型涉及在盘上方的电晕或射流的底部的热等离子体。在磁化磁盘中发生的吸收 - 喷射不稳定性(AEI)导致螺旋密度波的生长,其可以解释低频QPOS。它已经被证明在从磁盘中提取增空能量并在Corona中向上发射时是非常有效的,因为Alfvén波。在这里,我们提出了一种简单的机制,该机制也允许AEI激发冠状离子。这种听力是由于磁泵浦,即作为从盘中出现的磁场线而发生的谐振过程被螺旋波周期性地压缩。我们展示了它如何通过重力和磁力应力的关节作用捕获在盘上方的碰撞中。我们讨论了这种机制在加热冠状粒子中的效率。

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