论文标题

探测射流X射线二进制器中的喷气喷射:SAX J1808.4-3658的变量和偏光喷气机

Probing jet launching in neutron star X-ray binaries: the variable and polarized jet of SAX J1808.4-3658

论文作者

Baglio, M. C., Russell, D. M., Crespi, S., Covino, S., Johar, A., Homan, J., Bramich, D. M., Saikia, P., Campana, S., D'Avanzo, P., Fender, R. P., Goldoni, P., Goodwin, A. J., Lewis, F., Masetti, N., Zanon, A. Miraval, Motta, S. E., Muñoz-Darias, T., Shahbaz, T.

论文摘要

我们在2019年爆发期间报告了毫秒X射线PULSAR(AMXP)SAX J1808.4-3658的光学和偏光运动。随着爆发的发展,观察到频谱上方的红色多余的形式(在Z,I和R波段中最突出)的频谱能量分布中低频过量的出现。这表明由于射流而导致光学薄的同步加速器发射,如先前在爆发过程中和其他AMXP中所示。在爆发衰减结束时,消息人士进入了回流状态。在回流期间仍观察到低频过量。我们的光学(BVRI)极化活动在整个爆发过程中显示了可变的线性极化(LP)。我们表明,这对源是固有的,在所有频段中都具有低水平但显着的检测(0.2-2%)。 LP光谱在主要爆发和回流状态期间都是红色的,比其他解释相对于其他解释,偏向于这种可变极化的喷气起点,例如托姆森散射的圆盘或磁盘的自由电子或推动物质。在回流状态下,观察到了LP水平较强(1-2%)的几个发作。低水平的可变LP暗示着射流底部附近的磁场强烈纠结。这些结果清楚地表明了极化法是一种强大的工具,用于探测X射线二进制喷气机的磁场结构,类似于AGN Jets。

We report on an optical photometric and polarimetric campaign on the accreting millisecond X-ray pulsar (AMXP) SAX J1808.4-3658 during its 2019 outburst. The emergence of a low-frequency excess in the spectral energy distribution in the form of a red excess above the disc spectrum (seen most prominently in z, i and R-bands) is observed as the outburst evolves. This is indicative of optically thin synchrotron emission due to a jet, as seen previously in this source and in other AMXPs during outburst. At the end of the outburst decay, the source entered a reflaring state. The low-frequency excess is still observed during the reflares. Our optical (BVRI) polarimetric campaign shows variable linear polarization (LP) throughout the outburst. We show that this is intrinsic to the source, with low-level but significant detections (0.2-2%) in all bands. The LP spectrum is red during both the main outburst and the reflaring state, favoring a jet origin for this variable polarization over other interpretations, such as Thomson scattering with free electrons from the disc or the propelled matter. During the reflaring state, a few episodes with stronger LP level (1-2 %) are observed. The low-level, variable LP is suggestive of strongly tangled magnetic fields near the base of the jet. These results clearly demonstrate how polarimetry is a powerful tool for probing the magnetic field structure in X-ray binary jets, similar to AGN jets.

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