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首页> 外文期刊>Physical review, D >Moving closer to the collapse of a massless scalar field in spherically symmetric anti-de Sitter spacetimes
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Moving closer to the collapse of a massless scalar field in spherically symmetric anti-de Sitter spacetimes

机译:靠近球形对称的抗DE保证时的无麻自动标量场的崩溃

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摘要

We present a new hybrid Cauchy-characteristic evolution scheme that is particularly suited to study gravitational collapse in spherically symmetric asymptotically (global) anti-de Sitter (AdS) spacetimes. The Cauchy evolution allows us to track the scalar field through the different round trips to the AdS boundary, while the characteristic method can bring us very close to the point of formation of an apparent horizon. We describe all the details of the method, including the transition between the two evolution schemes and the details of the numerical implementation for the case of massless scalar fields. We use this scheme to provide more numerical evidence for a recent conjecture on the power law scaling of the apparent horizon mass resulting from the collapse of subcritical configurations. We also compute the critical exponents and echoing periods for a number of critical points and confirm the expectation that their values should be the same as in the asymptotically flat case.
机译:我们提出了一种新的混合Cauchy-特征演化方案,特别适合在球形对称渐近(全球)抗DE保姆(ADS)偶数的术中的引力崩溃。 Cauchy Evolution允许我们通过不同的圆形跳闸跟踪标量字段到广告边界,而特征方法可以使我们非常接近表观视野的形成点。 我们描述了该方法的所有细节,包括两种演化方案之间的转换以及无大量标量字段的情况下的数值实现的细节。 我们使用该方案为最近猜测亚临界配置崩溃导致的表观地平线质量的电力法缩放的最新猜想提供更多数值证据。 我们还为许多关键点计算了临界指数和回声期,并确认期望其值应与渐近平稳案例相同。

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