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Non-relativistic Limit of Dirac Equations in Gravitational Field and Quantum Effects of Gravity

Non-relativistic Limit of Dirac Equations in Gravitational Field and Quantum Effects of Gravity
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摘要 Based on unified theory of electromagnetic interactions and gravitational interactions, the non-relativistic limit of the equation of motion of a charged Dirac particle in gravitational field is studied. From the Schroedinger equation obtained from this non-relativistic limit, we can see that the classical Newtonian gravitational potential appears as a part of the potential in the Schroedinger equation, which can explain the gravitational phase effects found in COW experiments. And because of this Newtonian gravitational potential, a quantum particle in the earth's gravitational field may form a gravitationally bound quantized state, which has already been detected in experiments. Three different kinds of phase effects related to gravitational interactions are studied in this paper, and these phase effects should be observable in some astrophysical processes. Besides, there exists direct coupling between gravitomagnetic field and quantum spin, and radiation caused by this coupling can be used to directly determine the gravitomagnetic field on the surface of a star.
作者 WU Ning
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2006年第3期452-456,共5页 理论物理通讯(英文版)
关键词 quantum gravity gauge field quantum effects of gravity 非线性相对极限 迪拉克方程 重力量子效应 量规场
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