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How can exact and approximate solutions of Einstein's field equations be compared?

机译:如何比较Einstein现场方程的精确和近似解?

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摘要

The problem of comparison of the stationary axisymmetric vacuum solutions obtained within the framework of exact and approximate approaches for the description of the same general relativistic systems is considered. We suggest two ways of carrying out such comparison: (i) through the calculation of the Ernst complex potential associated with the approximate solution whose form on the symmetry axis is subsequently used for the identification of the exact solution possessing the same multipole structure, and (ii) the generation of approximate solutions from exact ones by expanding the latter in series of powers of small parameters. The central result of our paper is the derivation of the correct approximate analogues of the double-Kerr solution possessing the physically meaningful equilibrium configurations. We also show that the interpretation of an approximate solution originally attributed to it on the basis of some general physical suppositions may not coincide with its true nature established with the aid of a more accurate technique.
机译:考虑了在精确和近似方法的框架内获得的静止轴对称真空溶液的比较问题,用于描述相同的一般相对论系统的描述。我们建议使用这种比较的方法:(i)通过计算与对称轴上的形式的近似解决方案相关的Ernst复杂电位随后用于识别具有相同多极结构的精确解决方案,以及( ii)通过在一系列小参数的力量中扩展后一来,通过扩展后一部分来产生近似解决方案。我们论文的中心结果是推导出具有物理有意义的均衡配置的双克尔溶液的正确近似类似物的衍生。我们还表明,最初归因于某些一般物理假设的近似解决方案的解释可能与借助更准确的技术建立的真实性质不一致。

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