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PHOTON BUBBLES IN THE CIRCUMSTELLAR ENVELOPES OF YOUNG MASSIVE STARS

机译:幼大质量恒星圆壳中的光泡

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We show that the optically thick dusty envelopes surrounding young high-mass stars are subject to the photon bubble instability. The infrared radiation passing through the envelope amplifies magnetosonic disturbances, with growth rates in our local numerical radiation MHD calculations that are consistent with a linear analysis. Modes with wavelengths comparable to the gas pressure scale height grow by more than 2 orders of magnitude in 1000 yr, reaching nonlinear amplitudes within the envelope lifetime. If the magnetic pressure in the envelope exceeds the gas pressure, the instability develops into trains of propagating shocks. Radiation escapes readily through the low-density material between the shocks, enabling accretion to continue despite the Eddington limit imposed by the dust opacity. The supersonic motions arising from the photon bubble instability can help explain the large velocity dispersions of hot molecular cores, while conditions in the shocked gas are suitable for maser emission. We conclude that the photon bubble instability may play a key role in the formation of massive stars.
机译:我们表明,围绕着年轻的高质量恒星的光学上厚厚的尘埃包络受到光子气泡不稳定的影响。穿过包络线的红外辐射会放大磁声扰动,我们本地数值辐射MHD计算中的增长率与线性分析一致。波长与气压标高相当的模式在1000年内增长了2个数量级以上,在包络寿命内达到了非线性幅度。如果外壳中的电磁压力超过气体压力,则不稳定会发展为一系列传播的冲击。冲击之间的低密度材料容易散发出辐射,尽管尘埃不透明所造成的爱丁顿极限,仍使吸积继续进行。由光子气泡不稳定性引起的超音速运动可以帮助解释热分子核的大速度色散,而受激气体中的条件适合于大量发射。我们得出的结论是,光子气泡不稳定性可能在大质量恒星的形成中起关键作用。

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