The cosmic battery revisited

被引:31
作者
Contopoulos, Ioannis [1 ]
Kazanas, Demosthenes
Christodoulou, Dimitris M.
机构
[1] Acad Athens, Res Ctr Astron, GR-11527 Athens, Greece
[2] NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
[3] Math Methods, Bedford, MA 01730 USA
关键词
accretion; accretion disks; MHD; plasmas; stars : magnetic fields;
D O I
10.1086/507600
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We reinvestigate the generation and accumulation of magnetic flux in optically thin accretion flows around active gravitating objects. The source of the magnetic field is the azimuthal electric current associated with the Poynting-Robertson drag on the electrons of the accreting plasma. This current generates magnetic field loops that open up because of the differential rotation of the flow. We show through simple numerical simulations that what regulates the generation and accumulation of magnetic flux near the center is the value of the plasma conductivity. Although the conductivity is usually considered to be effectively infinite for the fully ionized plasmas expected near the inner edge of accretion disks, the turbulence of those plasmas may actually render them much less conducting due to the presence of anomalous resistivity. We have discovered that if the resistivity is sufficiently high throughout the turbulent disk while it is suppressed inside its inner edge, an interesting steady state process is established: accretion carries and accumulates magnetic flux of one polarity inside the inner edge of the disk, whereas magnetic diffusion releases magnetic flux of the opposite polarity to large distances. In this scenario, magnetic flux of one polarity grows and accumulates at a steady rate in the region inside the inner edge and up to the point of equipartition when it becomes dynamically important. We argue that this inward growth and outward expulsion of oppositely directed magnetic fields that we propose could account for the similar to 30 minute cyclic variability observed in the Galactic microquasar GRS 1915+105.
引用
收藏
页码:1451 / 1456
页数:6
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