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Black-hole production from ultrarelativistic collisions

机译:来自Utrarivistic碰撞的黑洞生产

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摘要

Determining the conditions under which a black hole can be produced is a long-standing and fundamental problem in general relativity. We use numerical simulations of colliding self-gravitating fluid objects to study the conditions of black-hole formation when the objects are boosted to ultrarelativistic speeds. Expanding on the previous work, we show that the collision is characterized by a type-I critical behaviour, with a black hole being produced for masses above a critical value, M_c, and a partially bound object for masses below the critical one. More importantly, we show for the first time that the critical mass varies with the initial effective Lorentz factor γ following a simple scaling of the type M_c ~ K_γ ~(-1.0), thus indicating that a black hole of infinitesimal mass is produced in the limit of a diverging Lorentz factor. Furthermore, because a scaling is present also in terms of the initial stellar compactness, we provide a condition for black-hole formation in the spirit of the hoop conjecture.
机译:确定可以产生黑洞的条件是一般相对性的长期和基本问题。我们使用碰撞自我重力流体物体的数值模拟,以研究当物体升高到超焦论速度时的黑洞形成条件。在上一项工作中扩展,我们表明碰撞的特征在于一种类型的临界行为,具有用于临界值,M_C的质量的黑洞,以及批判性群体的群体的部分绑定对象。更重要的是,我们首次展示临界质量随着M_C〜K_γ〜(-1.0)的简单缩放之后的初始有效的Lorentz因子γ而变化,从而表明在中产生了无限的物质的黑洞散洛伦兹因子的极限。此外,由于初始恒星紧凑性也存在缩放,因此我们为箍猜测的精神提供了黑洞形成的条件。

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