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Matter Waves in a Static Gravitational Field
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作者 Neculai Agavriloaei 《Journal of Modern Physics》 2012年第8期750-754,共5页
A new approach of the matter waves concept initiated by Louis de Broglie leads to a new model – the vacuum matter waves. By using the physics of time dilation, one can calculate a gravitational cutoff frequency, with... A new approach of the matter waves concept initiated by Louis de Broglie leads to a new model – the vacuum matter waves. By using the physics of time dilation, one can calculate a gravitational cutoff frequency, with respect to the spectrum of vacuum fluctuations, which is the upper bound of the frequency range of this new model. We described the properties of these new waves and outlined the connection between them and the dimensions at Planck length level. The calculation of velocity in circular orbits by using this new concept complies with the well-known equation. One of its consequences is that the structure of the physical vacuum is modified on the radial direction with the gravity source, but not modified on its tangential direction. This study places the space-time structure from sub-quantum level into a new light and makes the connection between this level and that of the planetary systems. 展开更多
关键词 matter WAVEs Quantum Vacuum De BROGLIE WAVEs special RELATIVITY Theory inertia Mach’s PRINCIPLE
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Mach Principle and Post-Einsteinian Relativity Theory
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作者 B. S. Sadykov 《Journal of Modern Physics》 2018年第1期35-50,共16页
Inertia is one of the most mysterious forces of nature. Its physical nature is unknown. Accordingly, attempts are made to avoid this “dark force” in one way or another. In Newton’s mechanics and in the special rela... Inertia is one of the most mysterious forces of nature. Its physical nature is unknown. Accordingly, attempts are made to avoid this “dark force” in one way or another. In Newton’s mechanics and in the special relativity theory, this is done by postulating inertial reference frame, in the general relativity theory by postulating the equivalence principle. Postulates cannot change the laws of nature. One needs to know the latter. Given that the forces of inertia result in non-inertial reference frames only, a hypothesis of the induction nature of inertia has been made. According to this hypothesis, the forces of inertia result as the reaction of a body to external influence. A system of equations explaining the physical nature of inertia and its connection to gravity has been drafted. A group of coordinate conversion has been suggested, which without violating the general covariance of the laws of nature, enables to distinguish one reference frame associated with one body from another system associated with another body, to determine the privileged ones, and to take into consideration their influence on the readings of measurement instruments. A modified mechanics had been created. It takes into consideration the Mach’s principle and enables to cover all systems with the relativity principle. All of the relativistic effects arise from it. The reasons for emergence of new particles, dark matter, dark energy etc. are explained. New effects are predicted. 展开更多
关键词 inertia Gravity Massive Reference systems RELATIVITY inertiaL FIELD Kinetic FIELD MOMENT Mach’s Principle DARK matter
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关于狭义相对论中质量含义的讨论
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作者 刘启能 《西南民族学院学报(自然科学版)》 1995年第3期359-360,共2页
对狭义相地论中质量的含义作了较详细的讨论,得出:狭义相对论中的质量不是物理惯性的量度,而是物体所含物质的量度.
关键词 惯性 质量 狭义相对论
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