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Twinkle little stars: Massive stars are quenched in strong magnetic fields

机译:闪烁的小星星:巨大的恒星在强磁场中淬火

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The role of the magnetic fields in the formation and quenching of stars with different mass is unknown. We studied the energy balance and the star formation efficiency in a sample of molecular clouds in the central kpc region of NGC 1097, known to be highly magnetized. Combining the full polarization VLA/radio continuum observations with the HST/Hα, Paα and the SMA/CO lines observations, we separated the thermal and non-thermal synchrotron emission and compared the magnetic, turbulent, and thermal pressures. Most of the molecular clouds are magnetically supported against gravitational collapse needed to form cores of massive stars. The massive star formation efficiency of the clouds also drops with the magnetic field strength, while it is uncorrelated with turbulence (Tabatabaei et al. 2018). The inefficiency of the massive star formation and the low-mass stellar population in the center of NGC 1097 can be explained in the following steps: I) Magnetic fields supporting the molecular clouds prevent the collapse of gas to densities needed to form massive stars. II) These clouds can then be fragmented into smaller pieces due to e.g., stellar feedback, non-linear perturbations and instabilities leading to local, small-scale diffusion of the magnetic fields. III) Self-gravity overcomes and the smaller clouds seed the cores of the low-mass stars.
机译:磁场在具有不同质量的恒星的形成和淬火中的作用是未知的。我们研究了NGC 1097中央KPC区中的分子云样品中的能量平衡和星形成效率,已知是高磁化的。将完全偏振VLA /无线电连续素观测与HST /Hα,PAα和SMA / CO线观察结合,我们将热和非热同步发射分开并比较磁,湍流和热压。大多数分子云都是磁性支撑的,以形成形成大规模恒星的核心所需的重力塌陷。云的大恒星形成效率也脱落磁场强度,而湍流是不相关的(Tabatabaei等,2018)。在以下步骤下,可以解释大规模恒星形成和NGC 1097中心中的低质量恒星群的效率:i)支撑分子云的磁场防止气体塌陷以形成大量恒星所需的密度。 II)由于例如,这些云可以将这些云分离成较小的部分。,恒星反馈,非线性扰动和不稳定性,导致局部的小规模扩散。 iii)自我重力克服和较小的云籽种子低质量恒星的核心。

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