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首页> 外文期刊>Hyperfine Interactions: Journal Devoted to Research in the Border Regions of Solid State, Atomic and Nuclear Physics >Nuclear resonant scattering of synchrotron radiation as a method for distinction between covariant ether theories and special relativity
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Nuclear resonant scattering of synchrotron radiation as a method for distinction between covariant ether theories and special relativity

机译:同步辐射的核共振散射,作为区分协变以太理论和狭义相对论的一种方法

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paper stresses the importance for basic physics of the new proposed Champeney-like rotor experiment with nuclear resonant scattering of synchrotron radiation. Such an experiment, being sensitive to energy shifts proportional to c(-3) (c is the light velocity in vacuum), should be able to distinguish between predictions of special relativity theory and covariant ether theories, and thus allow to differentiate between them. The results of computer simulations of experiments with the 14.4 keV resonance in Fe-57 show that an energy resolution DeltaE/E at the level of 10(-16) can be expected which is enough to reveal the third order term.
机译:论文强调了新提出的类似尚佩尼转子实验的同步加速器辐射核共振散射对基本物理的重要性。这样的实验对与c(-3)成正比的能量转移敏感(c是真空中的光速),应该能够区分狭义相对论和协变以太理论的预测,从而可以区分它们。在Fe-57中以14.4 keV共振进行实验的计算机模拟结果表明,可以预期能量分辨率DeltaE / E为10(-16),足以揭示三阶项。

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