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Electromagnetic and neutron emissions from brittle rocks failure: Experimental evidence and geological implications

机译:脆性岩石破裂产生的电磁和中子排放:实验证据和地质意义

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It has been observed energy emission in the form of electromagnetic radiation, clearly indicating charge redistribution, and neutron bursts, necessarily involving nuclear reactions, during the failure process of quasi-brittle materials such as rocks, when subjected to compression tests. The material used is Luserna stone, which presents a very brittle behaviour during compression failure. The observed phenomenon of high-energy particle emission, i.e., electrons and neutrons, can be explained in the framework of the superradiance applied to the solid state, where individual atoms lose their identity and become part of different plasmas, electronic and nuclear. Since the analysed material contains iron, it can be conjectured that piezonuclear reactions involving fission of iron into aluminum, or into magnesium and silicon, should have occurred during compression damage and failure. These complex phenomenologies are confirmed by Energy Dispersive X-ray Spectroscopy (EDS) tests conducted on Luserna stone specimens, and found additional evidences at the Earth’s Crust scale, where electromagnetic and neutron emissions are observed just in correspondence with major earthquakes. In this context, the effects of piezonuclear reactions can be also considered from a geophysical and geological point of view.
机译:已经观察到在准脆性材料(例如岩石)经受压缩测试的过程中,电磁辐射形式的能量发射,清楚地表明了电荷的重新分布以及中子爆发,其中必然涉及核反应。使用的材料是Luserna石,在压缩失败时表现出非常脆的行为。观察到的高能粒子发射现象,即电子和中子,可以在应用于固态的超辐射框架中加以解释,其中各个原子失去身份并成为不同的等离子体(电子和核)的一部分。由于所分析的材料包含铁,因此可以推测,在压缩破坏和破坏过程中,应该发生了涉及铁裂变为铝,镁和硅的压电核反应。这些复杂的现象学已通过对Luserna石头样本进行的能量色散X射线光谱(EDS)测试得到证实,并在地壳尺度上发现了其他证据,在那里观察到的电磁和中子辐射正好与大地震相对应。在这种情况下,还可以从地球物理和地质的角度来考虑压电核反应的影响。

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