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On the use of a heterogeneous MIMD-SIMD platform to simulate the dynamics of globular clusters with a central massive black hole

机译:关于使用异构MIMD-SIMD平台模拟具有中心大质量黑洞的球状星团的动力学

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摘要

The dynamics of a large stellar (globular) cluster containing N=128,000 stars has been simulated using a direct summation (O(N2)) method and a heterogeneous platform. Preliminary simulations have been carried out on model systems with and without the presence, in their center of mass, of a black hole whose mass has been varied from 0.02 to 0.1 times the total mass of the cluster. These simulations followed the evolution of the globular cluster in order to describe its dynamics over an interval of time sufficiently large with respect to the internal crossing time. Computations have demonstrated that the platform heterogeneity, allowing a very efficient use of the computational resources, can be considered a key feature for sustaining large computational loads. Our results show that the massive object in the center of the cluster alters the surrounding star distribution very quickly; the following evolution is much slower, as it occurs via two-body collisional relaxation.
机译:使用直接求和(O(N2))方法和异构平台模拟了包含N = 128,000个恒星的大型恒星(球状)星团的动力学。已经在模型系统上进行了初步模拟,在模型系统的质心中是否存在黑洞,黑洞的质量变化范围是群集总质量的0.02到0.1倍。这些模拟遵循球状星团的演化,以描述其在相对于内部穿越时间足够大的时间间隔内的动力学。计算表明,平台异构性(允许非常高效地使用计算资源)可以被视为维持大量计算负载的关键特征。我们的结果表明,位于星团中心的巨大天体非常迅速地改变了周围的恒星分布。接下来的演化要慢得多,因为它是通过两体碰撞松弛发生的。

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