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首页> 外文期刊>The Astrophysical journal >THE SUBMILLIMETER AND MILLIMETER EXCESS OF THE SMALL MAGELLANIC CLOUD: MAGNETIC DIPOLE EMISSION FROM MAGNETIC NANOPARTICLES?
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THE SUBMILLIMETER AND MILLIMETER EXCESS OF THE SMALL MAGELLANIC CLOUD: MAGNETIC DIPOLE EMISSION FROM MAGNETIC NANOPARTICLES?

机译:小麦哲伦云的亚微米和毫米级过量:磁性纳米粒子的磁偶极子发射?

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The Small Magellanic Cloud (SMC) has surprisingly strong submillimeter- and millimeter-wavelength emission that is inconsistent with standard dust models, including those with emission from spinning dust. Here, we show that the emission from the SMC may be understood if the interstellar dust mixture includes magnetic nanoparticles, emitting magnetic dipole radiation resulting from thermal fluctuations in the magnetization. The magnetic grains can be metallic iron, magnetite Fe3O4, or maghemite γ-Fe2O3. The required mass of iron is consistent with elemental abundance constraints. The magnetic dipole emission is predicted to be polarized orthogonally to the normal electric dipole radiation if the nanoparticles are inclusions in larger grains. We speculate that other low-metallicity galaxies may also have a large fraction of the interstellar Fe in magnetic materials.
机译:小麦哲伦星云(SMC)具有令人惊讶的强亚毫米和毫米波长辐射,这与标准的尘埃模型(包括那些旋转尘埃的尘埃模型)不一致。在这里,我们表明,如果星际尘埃混合物中包含磁性纳米粒子,则可以理解SMC的发射,该磁性纳米粒子会发射由于磁化强度的热波动而产生的磁偶极子辐射。磁性晶粒可以是金属铁,磁铁矿Fe3O4或磁铁矿γ-Fe2O3。所需的铁质量与元素丰度约束一致。如果纳米颗粒是较大颗粒中的夹杂物,则预计磁偶极子发射会与正常的电偶极子辐射正交极化。我们推测,其他低金属星系在磁性材料中也可能占星际铁的很大一部分。

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