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首页> 外文期刊>The Astrophysical journal >MONITORING THE MASS ACCRETION RATE IN SCORPIUS X-1 USING THE OPTICAL JOHNSON B FILTER
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MONITORING THE MASS ACCRETION RATE IN SCORPIUS X-1 USING THE OPTICAL JOHNSON B FILTER

机译:使用光学约翰逊B过滤器监测SCORPIUS X-1的质量积聚率

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The emission from low-mass X-ray binaries (LMXBs) arises from the accretion of mass onto a neutron star or black hole. A knowledge of the amount of mass being accreted as well as changes in this value are therefore essential inputs into models of these systems. Despite the need for this information, we currently lack an easily applied method that allows the accretion rate to be measured. X-ray color-color plots and UV observations can be used for this purpose, but these methods require access to oversubscribed satellites. Even if time is granted on these facilities, there is no guarantee that the source will be in a desired state when the observations take place. In this paper we show that an estimate of the ratio of the mass accretion rate to the Eddington rate can be obtained for Sco X-1 by using the Johnson B magnitude. Based on correlated X-ray and ground-based observations, we find that for Sco X-1, M/M_E = -(0.123 ± 0.007)B + 2.543 ± 0.085. This relation is valid when the system is on its normal and lower flaring branches. Based on theoretical models, we suggest that similar relations should also exist for other LMXBs.
机译:低质量X射线双星(LMXB)的发射源于质量在中子星或黑洞上的积聚。因此,了解要增加的质量以及该值的变化是这些系统模型的基本输入。尽管需要此信息,但我们目前尚缺乏一种易于应用的方法来测量吸积率。 X射线色图和UV观测可用于此目的,但是这些方法需要访问超额订购的卫星。即使在这些设施上有时间,也无法保证观察时信号源将处于所需状态。在本文中,我们表明,使用约翰逊B量级可以得出Sco X-1的质量增加速率与爱丁顿速率之比的估计值。基于相关的X射线和地面观测,我们发现对于Sco X-1,M / M_E =-(0.123±0.007)B + 2.543±0.085。当系统位于其正常的和较低的扩口分支上时,此关系有效。基于理论模型,我们建议其他LMXB也应存在类似的关系。

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