首页> 外文期刊>The Astrophysical journal >AN INITIAL LOOK AT THE FAR-INFRARED-RADIO CORRELATION WITHIN NEARBY STAR-FORMING GALAXIES USING THE SPITZER SPACE TELESCOPE
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AN INITIAL LOOK AT THE FAR-INFRARED-RADIO CORRELATION WITHIN NEARBY STAR-FORMING GALAXIES USING THE SPITZER SPACE TELESCOPE

机译:使用Spitzer空间望远镜在邻近星型星系中远红外无线电相关性的初步发现

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摘要

We present an initial look at the far-infrared-radio correlation within the star-forming disks of four nearby, nearly face-on galaxies (NGC 2403, NGC 3031, NGC 5194, and NGC 6946). Using Spitzer MIPS imaging, observed as part of the Spitzer Infrared Nearby Galaxies Survey (SINGS), and Westerbork Synthesis Radio Telescope (WSRT) radio continuum data, taken for the WSRT SINGS radio continuum survey, we are able to probe variations in the logarithmic 24 μm/22 cm (q_(24)) and 70 μm/22 cm (q_(70)) surface brightness ratios across each disk at subkiloparsec scales. We find general trends of decreasing q_(24) and q_(70) with declining surface brightness and with increasing radius. The residual dispersion around the trend of q_(24) and q_(70) versus surface brightness is smaller than the residual dispersion around the trend of q_(24) and q_(70) versus radius, on average by ~0.1 dex, indicating that the distribution of star formation sites is more important in determining the infrared/radio disk appearance than the exponential profiles of disks. We have also performed preliminary phenomenological modeling of cosmic-ray electron (CR electron) diffusion using an image-smearing technique and find that smoothing the infrared maps improves their correlation with the radio maps. We find that exponential smoothing kernels work marginally better than Gaussian kernels, independent of projection for these nearly face-on galaxies. This result suggests that additional processes besides simple random walk diffusion in three dimensions must affect the evolution of CR electrons. The best-fit smoothing kernels for the two less active star-forming galaxies (NGC 2403 and NGC 3031) have much larger scale lengths than those of the more active star-forming galaxies (NGC 5194 and NGC 6946). This difference may be due to the relative deficit of recent CR electron injection into the interstellar medium for the galaxies that have largely quiescent disks.
机译:我们初步观察了附近的四个几乎面朝上的星系(NGC 2403,NGC 3031,NGC 5194和NGC 6946)的恒星形成圆盘内的远红外无线电相关性。使用Spitzer MIPS成像(作为Spitzer红外邻近星系调查(SINGS)的一部分)和Westerbork综合射电望远镜(WSRT)无线电连续谱数据(用于WSRT SINGS无线电连续谱调查),我们能够探测对数24 μm/ 22 cm(q_(24))和70μm/ 22 cm(q_(70))的每个亚盘面下亚盘面的表面亮度比。我们发现随着表面亮度的下降和半径的增大,q_(24)和q_(70)减小的总体趋势。 q_(24)和q_(70)趋势相对于表面亮度周围的残留色散小于q_(24)和q_(70)趋势相对于半径周围的残留色散,平均约为0.1 dex,表明在确定红外/无线电盘的外观方面,恒星形成部位的分布比盘的指数分布更为重要。我们还使用图像涂抹技术对宇宙射线电子(CR电子)扩散进行了初步的现象学建模,发现平滑红外图改善了它们与无线电图的相关性。我们发现,指数平滑核的工作要比高斯核稍微好一些,而与这些近乎正面的星系的投影无关。该结果表明,除了在三个维度上的简单随机游走扩散之外,其他过程也必须影响CR电子的演化。两个不太活跃的恒星形成星系(NGC 2403和NGC 3031)的最佳拟合平滑内核比活跃程度较高的恒星形成星系(NGC 5194和NGC 6946)具有更大的尺度长度。这种差异可能是由于最近CR电子注入星际介质中相对静止的盘状星系相对缺乏。

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