Different Mass Definitions and Their Pluses and Minuses Related to Gravity

E. Haug
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引用次数: 4

Abstract

The discussion of what matter and mass are has been going on for more than 2500 years. Much has been discovered about mass in various areas, such as relativity theory and modern quantum mechanics. Still, quantum mechanics has not been unified with gravity. This indicates that there is perhaps something essential not understood about mass in relation to gravity. In relation to gravity, several new mass definitions have been suggested in recent years. We will provide here an overview of a series of potential mass definitions and how some of them appear likely preferable for a potential improved understanding of gravity at a quantum level. This also has implications for practical things such as getting gravity predictions with minimal uncertainty.
不同的质量定义及其与重力相关的优缺点
关于什么是物质和质量的讨论已经持续了2500多年。人们在许多领域发现了很多关于质量的知识,比如相对论和现代量子力学。然而,量子力学还没有与引力统一起来。这表明,关于质量与引力的关系,也许还有一些根本的东西没有被理解。关于重力,近年来提出了几个新的质量定义。我们将在这里提供一系列潜在质量定义的概述,以及其中一些定义如何在量子水平上对引力的潜在改进理解更可取。这对实际的事情也有影响,比如以最小的不确定性预测重力。
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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