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首页> 外文期刊>The Astrophysical journal >A CASE AGAINST SPINNING PAHS AS THE SOURCE OF THE ANOMALOUS MICROWAVE EMISSION
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A CASE AGAINST SPINNING PAHS AS THE SOURCE OF THE ANOMALOUS MICROWAVE EMISSION

机译:以纺丝为例的异常微波发射源

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摘要

We employ an all-sky map of the anomalous microwave emission (AME) produced by component separation of the microwave sky to study correlations between the AME and Galactic dust properties. We find that while the AME is highly correlated with all tracers of dust emission, the best predictor of the AME strength is the dust radiance. Fluctuations in the AME intensity per dust radiance are uncorrelated with fluctuations in the emission from polycyclic aromatic hydrocarbons (PAHs), casting doubt on the association between AME and PAHs. The PAH abundance is strongly correlated with the dust optical depth and dust radiance, consistent with PAH destruction in low density regions. We find that the AME intensity increases with increasing radiation field strength, at variance with predictions from the spinning dust hypothesis. Finally, the temperature dependence of the AME per dust radiance disfavors the interpretation of the AME as thermal emission. A reconsideration of other AME carriers, such as ultrasmall silicates, and other emission mechanisms, such as magnetic dipole emission, is warranted.
机译:我们使用由微波天空成分分离产生的异常微波发射(AME)的全天候地图来研究AME和银河尘埃特性之间的相关性。我们发现,尽管AME与粉尘排放的所有示踪剂高度相关,但AME强度的最佳预测指标是粉尘辐射率。每尘埃辐射的AME强度的波动与多环芳烃(PAH)的排放波动无关,这使人们对AME与PAH之间的联系产生怀疑。 PAH的丰度与粉尘的光学深度和粉尘辐射度密切相关,这与低密度区域中PAH的破坏一致。我们发现,AME强度随辐射场强度的增加而增加,这与旋转的粉尘假设的预测不同。最后,每粉尘辐射的AME的温度依赖性不利于将AME解释为热辐射。必须重新考虑其他AME载体(例如超小型硅酸盐)和其他发射机制(例如磁偶极子发射)。

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