论文标题

高红色速率Quasar PKS J1421-0643的分辨射流中的逆孔子散射

Inverse-Compton scattering in the resolved jet of the high-redshift quasar PKS J1421-0643

论文作者

Worrall, D. M., Birkinshaw, M., Marshall, H. L., Schwartz, D. A., Siemiginowska, A., Wardle, J. F. C.

论文摘要

尽管强制要求将宇宙微波背景(CMB)光子散射KPC尺度逆孔子(IC)散射到X射线带中,但在解决已解决的类星体喷气机中的检测证明通常是不安全的。高红移由于CMB的能量密度增加而提供了有利的条件,并且可以在无法访问的高能量上放置在无线电同步物发射电子组件上的约束。我们提供了Chandra,HST和VLA的新X射线,光学和无线电结果,并在$ Z = 3.69 $ Quasar PKS J1421-0643中介绍了JET的VLA。 X射线喷气机的延长约为$ 4.5''$(32 kpc预计长度)。喷气机的无线电频谱异常陡峭,并且与电子的最大lorentz系数一致。结果是为了检测到少数nt的磁场强度,多普勒的多个磁场强度,大约4个,并观看大约15^\ cirp的范围,而众多的范围是少数多普尔的磁场强度,并有利于检测逆磁场强度。中红外和高能伽马射线。据估计,对于电子 - positron Jet,估计$ 3 \ times 10^{46} $ erg s $^{ - 1} $,是类星体辐射功率的十分之一。射流辐射功率仅约为射流功率的0.07%,如果射流含有重颗粒,则辐射功率比较小,因此大多数射流功率可用于加热播层间介质。

Despite the fact that kpc-scale inverse-Compton (iC) scattering of cosmic microwave background (CMB) photons into the X-ray band is mandated, proof of detection in resolved quasar jets is often insecure. High redshift provides favourable conditions due to the increased energy density of the CMB, and it allows constraints to be placed on the radio synchrotron-emitting electron component at high energies that are otherwise inaccessible. We present new X-ray, optical and radio results from Chandra, HST and the VLA for the core and resolved jet in the $z=3.69$ quasar PKS J1421-0643. The X-ray jet extends for about $4.5''$ (32 kpc projected length). The jet's radio spectrum is abnormally steep and consistent with electrons being accelerated to a maximum Lorentz factor of about 5000. Results argue in favour of the detection of inverse-Compton X-rays for modest magnetic field strength of a few nT, Doppler factor of about 4, and viewing angle of about $15^\circ$, and predict the jet to be largely invisible in most other spectral bands including the far- and mid-infrared and high-energy gamma-ray. The jet power is estimated to be about $3 \times 10^{46}$ erg s$^{-1}$ which is of order a tenth of the quasar bolometric power, for an electron--positron jet. The jet radiative power is only about 0.07 per cent of the jet power, with a smaller radiated power ratio if the jet contains heavy particles, so most of the jet power is available for heating the intergalactic medium.

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