论文标题

低功率热点的粒子加速度:建模宽带光谱分布

Particle acceleration in low-power hotspots: modelling the broad-band spectral energy distribution

论文作者

Migliori, G., Orienti, M., Coccato, L., Brunetti, G., D'Ammando, F., Mack, K. -H., Prieto, M. A.

论文摘要

通过新的深近红外(NIR)和光学VLT观测值研究了在低功率无线电热点中活跃的加速度和辐射过程,并配有档案,高敏VLT,无线电VLA和X射线Chandra数据。对于三个研究的射电星系(3C 105、3C 195和3C 227),我们确认了观察到的无线电热点的NIR/光学对应物的检测。我们在3C 227 WEST和3C 105向南中解析了多个组件,并表征了后者的弥漫性NIR/光学发射。我们表明,该组件的线性尺寸($ \ gtrsim $ 4 kpc)使3C 105 South成为粒子在后打击区域重新加速的引人注目的案例。 3C 195和3C 227 W1的无线电对X射线光谱能量分布(SED)的建模提供了有关检测到的X射线发射的起源的线索。在逆康普顿模型的背景下,3C 195 South Set的特殊陡峭的同步曲线对辐射颗粒频谱的形状有限制,可以在低($ \ lyssim $ ghz)无线电频率和X射线频率和X射线频率上更好地了解SED形状。 3C 227 W1的X射线发射可以用源于紧凑型($ <$ 100 PC)区域的附加同步加速器组件来解释,例如无线电观测值在22 GHz处揭示的区域,前提是有效的粒子加速度($γ\ gtrsim $ 10 $^7 $)是正在进行的。新兴的图片是不同加速度和辐射过程共存的系统。

The acceleration and radiative processes active in low-power radio hotspots are investigated by means of new deep near-infrared (NIR) and optical VLT observations, complemented with archival, high-sensitivity VLT, radio VLA and X-ray Chandra data. For the three studied radio galaxies (3C 105, 3C 195 and 3C 227), we confirm the detection of NIR/optical counterparts of the observed radio hotspots. We resolve multiple components in 3C 227 West and in 3C 105 South and characterize the diffuse NIR/optical emission of the latter. We show that the linear size of this component ($\gtrsim$4 kpc) makes 3C 105 South a compelling case for particles' re-acceleration in the post-shock region. Modeling of the radio-to-X-ray spectral energy distribution (SED) of 3C 195 South and 3C 227 W1 gives clues on the origin of the detected X-ray emission. In the context of inverse Compton models, the peculiarly steep synchrotron curve of 3C 195 South sets constraints on the shape of the radiating particles' spectrum that are testable with better knowledge of the SED shape at low ($\lesssim$GHz) radio frequencies and in X-rays. The X-ray emission of 3C 227 W1 can be explained with an additional synchrotron component originating in compact ($<$100 pc) regions, such those revealed by radio observations at 22 GHz, provided that efficient particle acceleration ($γ\gtrsim$10$^7$) is ongoing. The emerging picture is that of systems in which different acceleration and radiative processes coexist.

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