论文标题

在超低无线电频率下达到热噪声:冲击前方的牙刷无线电遗物

Reaching thermal noise at ultra-low radio frequencies: the Toothbrush radio relic downstream of the shock front

论文作者

de Gasperin, F., Brunetti, G., Bruggen, M., van Weeren, R., Williams, W. L., Botteon, A., Cuciti, V., Dijkema, T. J., Edler, H., Iacobelli, M., Kang, H., Offringa, A., Orru, E., Pizzo, R., Rafferty, D., Rottgering, H., Shimwell, T.

论文摘要

超低频率观察(<100 MHz)特别具有挑战性,因为由于高空温度高以及电离层干扰的影响与观察频率成反比,因此它们通常以低信噪比的比率进行。尽管如此,这些观察结果对于研究宇宙射线低能种群的发射至关重要。我们旨在使用Lofar低带天线(LBA)系统获得第一个热噪声有限的(〜1.5 mjy/beam)深连续无线电图。我们的演示观察目标针对星系群RX J0603.3+4214(“牙刷”簇)。我们使用了所得的超低频率(58 MHz)图像来研究电击后区域中的宇宙射线加速度和进化,以及它们与无线电晕的存在的关系。我们描述了我们用于校准lofar lba观测值的数据还原。将所得图像与较高频率(Lofar 150 MHz和VLA 1500 MHz)的观察结果结合在一起,以提取光谱信息。我们使用所有荷兰车站以58 MHz的中心频率从LOFAR LBA系统进行的观察结果获得了第一个热噪声有限图像。有8小时的数据,我们以18“ x 11”的分辨率达到了1.3 mjy/beam的RMS噪声。我们开发的过程是朝着Lofar LBA迈向常规高保真成像的重要一步。无线电光谱的分析表明,无线电遗迹延伸至距离冲击前方800 kpc的距离,比电子冷却时间允许的距离大。此外,冲击波开始加速电子,从两个簇的交叉点<300 kpc的预计距离开始加速电子。如果可能与投影效应结合使用,则可以解释这些结果,如果电子被重新验证。

Ultra-low frequency observations (<100 MHz) are particularly challenging because they are usually performed in a low signal-to-noise ratio regime due to the high sky temperature and because of ionospheric disturbances whose effects are inversely proportional to the observing frequency. Nonetheless, these observations are crucial to study the emission from low-energy populations of cosmic rays. We aim to obtain the first thermal-noise limited (~ 1.5 mJy/beam) deep continuum radio map using the LOFAR Low Band Antenna (LBA) system. Our demonstration observation targeted the galaxy cluster RX J0603.3+4214 (the "Toothbrush" cluster). We used the resulting ultra-low frequency (58 MHz) image to study cosmic-ray acceleration and evolution in the post shock region, as well as their relation with the presence of a radio halo. We describe the data reduction we have used to calibrate LOFAR LBA observations. The resulting image is combined with observations at higher frequencies (LOFAR 150 MHz and VLA 1500 MHz) to extract spectral information. We obtained the first thermal-noise limited image from an observation carried out with the LOFAR LBA system using all Dutch stations at a central frequency of 58 MHz. With 8 hours of data, we reached an rms noise of 1.3 mJy/beam at a resolution of 18" x 11". The procedure we have developed is an important step forward towards routine high-fidelity imaging with the LOFAR LBA. The analysis of the radio spectra shows that the radio relic extends to distances of 800 kpc downstream from the shock front, larger than what allowed by electron cooling time. Furthermore, the shock wave started accelerating electrons already at a projected distance of <300 kpc from the crossing point of the two clusters. These results can be explained if electrons are reaccelerated downstream by background turbulence possibly combined with projection effects.

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