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首页> 外文期刊>International journal of modern physics, E. Nuclear physics >On the modification of nuclear chronometry methods in astrophysics and geophysics induced by excited states of alpha radioactive nuclei and gamma emission*
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On the modification of nuclear chronometry methods in astrophysics and geophysics induced by excited states of alpha radioactive nuclei and gamma emission*

机译:关于由α放射性核和γ发射的激发态引起的天体物理学和地球物理学中的核测年法的修改*

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摘要

In practically all methods of nuclear chronometry known till now, were the lifetimes of only fundamental states for decaying a-radioactive nuclei usually taken into account. But in the processes of nuclear synthesis in stars and under the influence of the constant cosmic radiation on the surfaces of planets, also the excited a-radioactive nuclei appear. Between them, there are the states with the excited a-particles inside the parent nuclei. They have much smaller lifetimes relative to the Geiger and Nutall law. And inside the large masses of stellar, terrestrial and meteoric substances, the transitions between different excited radioactive nuclei are accompanied by infinite chains of the 7-radiations with the subsequent γ-absorptions, the further 7-radiations etc. We must describe the a-decay evolution, considering such excited states and multiple γ-radiations and γ-absorptions inside stars and also under the influence of the cosmic radiation on the earth surface. We present the quantum-mechanical approach, which is based on the generalized Krylov-Fock theorem. Some simple estimations are presented. They give rise to the conclusion that the usual (non-corrected) "nuclear clocks" do not really indicate the realistic values but the upper limits of the durations of the a-decay stellar and planet processes.
机译:迄今为止,在几乎所有已知的核年表方法中,通常只考虑衰变a放射性核的基本状态的寿命。但是,在恒星的核合成过程中,在行星表面上恒定的宇宙辐射的影响下,也会出现激发的a放射性核。在它们之间,存在着母核内具有激发的a粒子的状态。相对于盖革和纳塔尔定律,它们的寿命要短得多。在大量的恒星,陆地和陨星物质内部,不同激发放射性核之间的跃迁伴随着7辐射的无限链,并伴随着随后的γ吸收,进一步的7辐射等。我们必须描述a-考虑到这种激发态以及恒星内部的多种γ辐射和γ吸收,以及在宇宙辐射对地球表面的影响下,衰变演化。我们提出了基于广义Krylov-Fock定理的量子力学方法。提出了一些简单的估计。他们得出这样的结论,即通常的(未经校正的)“核钟”并不能真正表明实际值,而是指示衰变恒星和行星过程持续时间的上限。

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