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首页> 外文期刊>Advances in Astronomy >Constraining the Stellar Mass Function in the Galactic Center via Mass Loss from Stellar Collisions
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Constraining the Stellar Mass Function in the Galactic Center via Mass Loss from Stellar Collisions

机译:通过恒星碰撞的质量损失约束银河中心的恒星质量函数

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The dense concentration of stars and high-velocity dispersions in the Galactic center imply that stellar collisions frequently occur. Stellar collisions could therefore result in significant mass loss rates. We calculate the amount of stellar mass lost due to indirect and direct stellar collisions and find its dependence on the present-day mass function of stars. We find that the total mass loss rate in the Galactic center due to stellar collisions is sensitive to the present-day mass function adopted. We use the observed diffuse X-ray luminosity in the Galactic center to preclude any present-day mass functions that result in mass loss rates>10-5M⨀yr−1in the vicinity of~1″. For present-day mass functions of the form,dN/dM∝M-α, we constrain the present-day mass function to have a minimum stellar mass≲7M⨀and a power-law slope≳1.25. We also use this result to constrain the initial mass function in the Galactic center by considering different star formation scenarios.
机译:恒星密集的星系和银河系中心的高速弥散表明恒星碰撞经常发生。因此,恒星碰撞可能会导致大量的质量损失率。我们计算了由于间接和直接的恒星碰撞而损失的恒星质量,并发现其对当今恒星质量函数的依赖性。我们发现由于恒星碰撞而导致的银河系中心的总质量损失率对当前采用的质量函数很敏感。我们使用在银河系中心观察到的漫射X射线发光度来排除任何导致质量损失率>10-5M⨀yr-1在1“附近的质量函数。对于形式为dN / dM∝M-α的当今质量函数,我们将当前质量函数约束为具有最小恒星质量≲7M⨀和幂律斜率≳1.25。我们还通过考虑不同的恒星形成情况,使用此结果来约束银河系中心的初始质量函数。

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