首页> 外文期刊>Journal of materials science research >The Collective Radioactive Decay of Atomic Nuclei Initiated by an External Mechanical Impact: Science Fiction or a New Class of Physical Processes
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The Collective Radioactive Decay of Atomic Nuclei Initiated by an External Mechanical Impact: Science Fiction or a New Class of Physical Processes

机译:由外部机械影响引发的原子核的集体放射性衰变:科幻小说或一类新的物理过程

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摘要

Abnormally high pressure or temperature can significantly reduce the lifetime of atomic nuclei including stable. A hypothesis on stable nuclei decays caused by mechanical collision of macro-objects containing these nuclei is put forward. Mechanisms of such decays are presented. At the same time the distance between interacting nuclei can be significantly higher than the range of nuclear interaction (as manifestations of strong interaction). In decays initiated by external impact, the mean lifetime with respect to particular decay can change depending on these factors. The hypothesis is verified experimentally. When a bismuth bullet collides with a steel flat target, we see different types of stable bismuth isotope decay including cluster one, which is not found in nature (if there is no external impacts). This new class of physical processes can be related to the collective radioactive decay of atomic nuclei initiated by an external mechanical impact.
机译:异常高压或高温会显着缩短包括稳定在内的原子核的寿命。提出了关于由包含这些原子核的宏观物体机械碰撞引起的稳定原子核衰变的假说。提出了这种衰减的机制。同时,相互作用核之间的距离可能大大高于核相互作用的范围(表现为强相互作用)。在外部影响引发的衰变中,特定衰变的平均寿命可能会根据这些因素而变化。该假设已通过实验验证。当铋弹与平坦的钢靶相撞时,我们会看到不同类型的稳定铋同位素衰减,包括第一类,这在自然界中是找不到的(如果没有外部影响)。这类新的物理过程可能与外部机械撞击引发的原子核的集体放射性衰变有关。

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