北京雁栖湖应用数学研究院 北京雁栖湖应用数学研究院

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关于我们
院长致辞
理事会
协作机构
参观来访
人员
管理层
科研人员
博士后
来访学者
行政团队
学术研究
研究团队
公开课
讨论班
招生招聘
教研人员
博士后
学生
会议
学术会议
工作坊
论坛
学院生活
住宿
交通
配套设施
周边旅游
新闻
新闻动态
通知公告
资料下载
清华大学 "求真书院"
清华大学丘成桐数学科学中心
清华三亚国际数学论坛
上海数学与交叉学科研究院
BIMSA > BIMSA General Relativity Seminar Evolution problems for the axially symmetric Einstein-Vlasov system: critical collapse, the Hoop conjecture and the weak cosmic censorship conjecture
Evolution problems for the axially symmetric Einstein-Vlasov system: critical collapse, the Hoop conjecture and the weak cosmic censorship conjecture
组织者
拉尔斯•安德森 , 赵博文
演讲者
Håkan Andréasson
时间
2023年05月29日 16:00 至 17:00
地点
A3-3-301
线上
Zoom 928 682 9093 (BIMSA)
摘要
Due to the complexity of the axially symmetric Einstein-Vlasov system there are no analytic results available in the literature for evolution problems except in the case of small initial data. By using numerical methods it is however possible to gain insights for general initial data. In this talk I will briefly discuss the particle in cell (PIC) method that is often used to treat Vlasov matter numerically and I will present results from two recent studies that I have carried out together with Ellery Ames and Oliver Rinne. We study gravitational collapse, in particular critical collapse, and it will be seen that a quantity that strongly affects the faith of a solution is the binding energy. We also study the Hoop conjecture and the weak cosmic censorship conjecture (WCCC). We seriously test the WCCC in two cases. In the first case we launch initial data for which the total angular momentum J satisfy |J|>M^2 which in view of the Kerr solution is a threat to the WCCC. In the second case we launch highly prolate initial data which in view of the Hoop conjecture also is a threat to the WCCC. It is remarkable how the matter configuration changes shape and properties in the evolution in order not to violate the WCCC which holds in all cases we study. I will also discuss some open problems.
演讲者介绍
My research is in general relativity and I am interested in questions about spacetime singularities and cosmic censorship. The cosmic censorship conjecture was proposed by Roger Penrose in the sixties and the hypothesis is that spacetime singularities are always hidden within black holes and cannot be seen (i.e. there are no "naked singularities"). In my research I primarily work on global existence for solutions to Einstein's equations and in particular to the Einstein-Vlasov system where the matter is modelled by kinetic theory. A global existence theorem is the first step towards an understanding of cosmic censorship. I am also interested in kinetic equations in general (on a flat background spacetime) such as the Maxwell-Vlasov system, the Vlasov-Poisson system and the relativistic Boltzmann equation.
北京雁栖湖应用数学研究院
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