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Searches for solar-influenced radioactive decay anomalies using spacecraft RTGs

机译:使用航天器RTG搜索受太阳影响的放射性衰变异常

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Experiments showing a seasonal variation of the nuclear decay rates of a number of different nuclei, and decay anomalies apparently related to solar flares and solar rotation, have suggested that the Sun may somehow be influencing nuclear decay processes. Recently, Cooper searched for such an effect in ~(238)Pu nuclei contained in the radioisotope thermoelectric generators (RTGs) on board the Cassini spacecraft. In this paper we modify and extend Cooper's analysis to obtain constraints on anomalous decays of ~(238)Pu over a wider range of models, but these limits cannot be applied to other nuclei if the anomaly is composition-dependent. We also show that it may require very high sensitivity for terrestrial experiments to discriminate among some models if such a decay anomaly exists, motivating the consideration of future spacecraft experiments which would require less precision.
机译:实验显示了许多不同核的核衰变率的季节性变化,以及与太阳耀斑和太阳旋转明显相关的衰变异常,这些实验表明,太阳可能以某种方式影响了核衰变过程。最近,库珀在卡西尼号航天器上的放射性同位素热电发生器(RTG)中所含的〜(238)Pu核中寻找这种效应。在本文中,我们修改并扩展了Cooper的分析,以在更广泛的模型中获得〜(238)Pu异常衰减的约束,但如果异常取决于成分,则这些限制不能应用于其他原子核。我们还表明,如果存在这样的衰减异常,则对于地面实验可能需要很高的灵敏度来区分某些模型,从而激发了对未来航天器实验的考虑,而该实验将需要较低的精度。

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