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Asymptotically simple spacetimes and mass loss due to gravitational waves

机译:由于引力波引起的渐近简单的空间和质量损失

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The cosmological constant. used to be a freedom in Einstein's theory of general relativity (GR), where one had a proclivity to set it to zero purely for convenience. The signs of. or. being zero would describe universes with different properties. For instance, the conformal structure of spacetime directly depends on.: null infinity I is a spacelike, null, or timelike hypersurface, if Lambda 0, Lambda = 0, or Lambda 0, respectively. Recent observations of distant supernovae have taught us that our universe expands at an accelerated rate, and this can be accounted for by choosing. 0 in Einstein's theory of GR. A quantity that depends on the conformal structure of spacetime, especially on the nature of I, is the Bondi mass which in turn dictates the mass loss of an isolated gravitating system due to energy carried away by gravitational waves. This problem of extending the Bondi mass to a universe with Lambda 0 has spawned intense research activity over the past several years. Some aspects include a closer inspection on the conformal properties, working with linearization, attempts using a Hamiltonian formulation based on "linearized" asymptotic symmetries, as well as obtaining the general asymptotic solutions of de Sitter-like spacetimes. We consolidate on the progress thus far from the various approaches that have been undertaken, as well as discuss the current open problems and possible directions in this area.
机译:宇宙常数。曾经是爱因斯坦的一般相对论(GR)理论的自由,那里有一个倾向于为方便起见将其设置为零。迹象。或者。为零将描述具有不同性质的宇宙。例如,Spacetime的共形结构直接取决于:Null Infinity I是一种空间,无效或时间般的超近,如果Lambda& 0,lambda = 0或lambda&分别为0。最近对遥远的超新星的观察教导了我们,我们的宇宙以加速的速度扩展,这可以通过选择来占据。 & 0在爱因斯坦理论的遗传学理论中。取决于时空的共形结构,特别是在I的性质上的量是粘合剂质量,其又决定了由于通过引力波传承的能量而被隔离的重力系统的质量损失。将邦迪质量扩展到宇宙的这个问题与Lambda& 0在过去几年中产生了激烈的研究活动。一些方面包括对共形性质的仔细检查,与线性化一起使用,使用基于“线性化”渐近对称的汉密尔顿的配方尝试,以及获得De Satter样刻度的一般渐近解。我们巩固到目前为止的进展,以及讨论该地区目前的公开问题和可能的方向。

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