利用 uGMRT 测量七个近邻大星系的射电连续晕

Souvik Manna, Subhashis Roy and Tapas Baug
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引用次数: 0

摘要

我们展示了利用升级版巨型移波射电望远镜(uGMRT)0.3-0.5 GHz 接收器对附近七个大星系进行的深度射电观测结果,其角度分辨率为 10″。这些观测的灵敏度从 ≈15 到 50 μJy 波束-1,比以前在这些频率上的观测低 ≈3-4 倍。在两个倾角适中的星系(NGC 3344 和 NGC 3627)中,首次看到了明显的弥散发射。对于四个接近边缘的星系--NGC 3623、NGC 4096、NGC 4594 和 NGC 4631,我们的 0.4 GHz 地图在垂直方向上探测到的射电光晕比在~1.5 GHz 的观测结果大得多。在这四个星系中,沿星系盘也探测到了明显更大的光晕。在 NGC 3623 和 NGC 4594 中,我们还探测到了以前从未见过的细长射电盘。我们还展示了 NGC 3344 和 NGC 3623 在 1.3 GHz 下的新 uGMRT 图像,以及 NGC 3627 在 1.5 GHz 下的新 VLA 图像。我们对不同截面的通量密度进行了指数函数拟合,发现与 ∼1.5 GHz 的高频图像相比,0.4 GHz uGMRT 图像的通量密度分布明显更广。利用 0.144、0.4 和 ∼1.5 GHz 的光谱指数图,我们绘制了七个样本星系的光谱指数图,发现在星系的光晕区,光谱的陡峭程度可达 ∼-1.5。
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Radio Continuum Halos of Seven Nearby Large Galaxies Using uGMRT
We present the results of deep radio observations of seven nearby large galaxies observed using the upgraded Giant Metrewave Radio Telescope (uGMRT) 0.3–0.5 GHz receivers with an angular resolution of ∼10″. The achieved sensitivities of these observations range from ≈15 to 50 μJy beam−1, which is a factor of ≈3–4 lower than the previous observations at these frequencies. For two galaxies (NGC 3344 and NGC 3627) with moderate inclination angles, significant diffuse emissions are seen for the first time. The detected radio halos in the vertical direction are significantly larger in our 0.4 GHz maps compared to the observations at ∼1.5 GHz for four nearly edge-on galaxies—NGC 3623, NGC 4096, NGC 4594, and NGC 4631. For these four galaxies, significantly larger halos are also detected along the galaxy disk. For NGC 3623 and NGC 4594, we could detect elongated radio disks that were not seen before. We also present new uGMRT images of NGC 3344 and NGC 3623 at 1.3 GHz and a new VLA image of NGC 3627 at 1.5 GHz. We fitted an exponential function to the flux densities along different cross-cuts and found a significantly wider distribution at the 0.4 GHz uGMRT images compared to the high-frequency images at ∼1.5 GHz. Using maps at 0.144, 0.4, and ∼1.5 GHz, we made spectral index maps of the seven sample galaxies and found a steepening of the spectrum up to a value of ∼−1.5 in the halo regions of the galaxies.
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