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首页> 外文期刊>The Astrophysical journal >A NEW MECHANISM FOR MASS ACCRETION UNDER RADIATION PRESSURE IN MASSIVE STAR FORMATION
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A NEW MECHANISM FOR MASS ACCRETION UNDER RADIATION PRESSURE IN MASSIVE STAR FORMATION

机译:恒星形成中辐射压力下质量增加的新机制

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During the formation of a massive star, strong radiation pressure from the central star acts on the dust sublimation front and tends to halt the accretion flow. To overcome this strong radiation pressure, it has been considered that a strong ram pressure produced by a high-mass accretion rate of 10–3 M ☉ yr–1 or more is needed. We reinvestigated the necessary condition to overcome the radiation pressure and found a new mechanism for overcoming it. Accumulated mass in a stagnant flow near the dust sublimation front helps the mass accretion by its weight. This mechanism relaxes the condition for the massive star formation. We call this mechanism the "OMOSHI effect," where OMOSHI is an acronym for "One Mechanism for Overcoming Stellar High radiation pressure by weIght." Additionally, in Japanese, OMOSHI is a noun meaning a weight that is put on something to prevent it from moving. We investigate the generation of the OMOSHI effect using local one-dimensional radiation hydrodynamics simulations. The radiation pressure and the gravitational force are connected through the gas pressure, and to sum up, the radiation pressure is balanced or overcome by the gravitational force. We also discuss the global structure and temporal variation of the accretion flow.
机译:在形成大质量恒星的过程中,来自中心恒星的强大辐射压力作用于升华粉尘的前沿,并趋于阻止积聚流。为了克服这种强大的辐射压力,人们认为需要由10–3 M☉yr–1或更高的高质量吸积率产生的强大的冲压压力。我们重新研究了克服辐射压力的必要条件,并找到了克服它的新机制。尘埃升华前沿附近停滞流中的累积质量有助于其重量增加。这种机制放松了大质量恒星形成的条件。我们将这种机制称为“ OMOSHI效应”,其中OMOSHI的缩写为“一种通过强度克服恒星高辐射压力的机制”。另外,在日语中,OMOSHI是一个名词,意指称重物放置在物体上以防止其移动。我们使用局部一维辐射流体动力学模拟研究OMOSHI效应的产生。辐射压力和重力通过气体压力连接,总而言之,辐射压力被重力抵消或克服。我们还将讨论吸积流的整体结构和时间变化。

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