Derivation of gravitational time dilation from principle of equivalence and special relativity

B. Dikshit
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引用次数: 1

Abstract

General relativity is the exact theory of gravity which has been experimentally found to be correct with extremely high accuracy. One of the most surprising predictions of the general theory is that time runs slow in a gravitational field. Its proof formally comes from Schwarzschild metric which is a solution of Einstein field equation for a spherically symmetric mass. However, as Einstein field equation is too complex, attempts have been made earlier to derive gravitational time dilation by direct use of principle of equivalence and special theory of relativity. But, this objective has been accomplished partially till date as the resulting expression agrees with the exact expression only upto first order. In this paper, by using principle of equivalence and special relativity, we present a thought experiment which helps us to derive an expression that exactly matches with the expression for gravitational time delay.
从等效原理和狭义相对论推导引力时间膨胀
广义相对论是关于引力的精确理论,它已被实验证明是正确的,而且精确度极高。广义理论最令人惊讶的预言之一是,时间在引力场中运行得很慢。它的正式证明来自于史瓦西度规,它是球对称质量的爱因斯坦场方程的解。但由于爱因斯坦场方程过于复杂,前人曾试图直接利用等效原理和狭义相对论推导引力时间膨胀。但是,到目前为止,这个目标已经部分完成,因为所得表达式仅在一阶之前与确切表达式一致。本文利用等效原理和狭义相对论,给出了一个思想实验,帮助我们推导出与引力时间延迟表达式完全匹配的表达式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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