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Lorentz Transformation of Gravitational Field

Zhi Cheng

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Abstract

The transformation relationship between different reference systems follows the principle of Lorentz transformation. In general relativity, the curvature of space-time caused by mass is regarded as a non-inertial frame of reference, so there is also a problem of frame of reference transformation. If the concept of virtual space-time is introduced, we can see that the existence of gravity can also introduce the Lorentz transformation relationship, so that we can deal with the problem of gravity in a simpler way. This article analyzes the static gravitational field, and obtains a result consistent with the Schwarzschild solution of relativity in a more concise way.

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What this paper is about

The transformation relationship between different reference systems follows the principle of Lorentz transformation. In general relativity, the curvature of space-time caused by mass is regarded as a non-inertial frame of reference, so there is also a problem of frame of reference transformation. If the concept of virtual space-time is introduced, we can see that the existence of gravity can also introduce the Lorentz transformation relationship, so that we can deal with the problem of gravity in a simpler way. This article analyzes the static gravitational field, and obtains a result consistent with the Schwarzschild solution of relativity in a more concise way.

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Available abstract

The transformation relationship between different reference systems follows the principle of Lorentz transformation. In general relativity, the curvature of space-time caused by mass is regarded as a non-inertial frame of reference, so there is also a problem of frame of reference transformation. If the concept of virtual space-time is introduced, we can see that the existence of gravity can also introduce the Lorentz transformation relationship, so that we can deal with the problem of gravity in a simpler way. This article analyzes the static gravitational field, and obtains a result consistent with the Schwarzschild solution of relativity in a more concise way.

Key concepts: Lorentz transformation, Gravitational field, Transformation (genetics), Inertial frame of reference, Principle of relativity, Frame of reference, Classical mechanics, Reference frame

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