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Properties of geodesics: Resolving an apparent conflict of Global Positioning System evidence with general relativity

机译:测地线的属性:解决全球定位系统证据与广义相对论之间的明显矛盾

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摘要

A gedanken experiment is described that exposes an apparent conflict between the treatment of proper timekeeping on geodesics according to general relativity theory, as customarily understood, and empirical evidence such as that of the Global Positioning System. The paradox is resolved by noting that there may be many geodesics between two spacetime events, only one of which represents a global maximum of proper time. The cardinality of such nonuniqueness (which may be that of the continuum) at first seems to violate the property that a geodesic between two events always incurs a (local) extremum of proper time. However, to first order (hence to observationally significant order), all free-fall orbits that have the same period have the same proper time, so no first variations of the orbits within our solution set change the proper time—a consistency check on the geodesic (extremum) interpretation of such orbits.
机译:描述了一个更实实验,该实验揭示了按照通常理解的广义相对论对大地测量法进行适当计时的处理与诸如全球定位系统的经验证据之间的明显冲突。通过指出两个时空事件之间可能存在许多测地线来解决这一矛盾,其中只有一个代表了适当时间的全局最大值。这种非唯一性(可能是连续体)的基数起初似乎违反了以下性质:两个事件之间的测地线总是会导致适当时间的(局部)极值。但是,对于一阶(因此从观测到显着的阶),所有具有相同周期的自由落体轨道都具有相同的适当时间,因此我们的解集内的轨道的第一变化不会改变适当的时间-对此类轨道的测地线(极值)解释。

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