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Pulsating regime of magnetic deflagration in crystals of molecular magnets

机译:分子磁体晶体中磁爆燃的脉动状态

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The stability of a magnetic deflagration front in a media of molecular magnets, such as Mn_(12) acetate, is considered. It is demonstrated that stationary deflagration is unstable with respect to one-dimensional perturbations if the energy barrier of the magnets is sufficiently high in comparison with the release of Zeeman energy at the front; their ratio may be interpreted as an analog to the Zeldovich number, as found in problems of combustion. When the Zeldovich number exceeds a certain critical value, a stationary deflagration front becomes unstable and propagates in a pulsating regime. Analytical estimates for the critical Zeldovich number are obtained. The linear stage of the instability is investigated numerically by solving the eigenvalue problem. The nonlinear stage is studied using direct numerical simulations. The parameter domain required for experimental observations of the pulsating regime is discussed.
机译:考虑了在诸如Mn_(12)乙酸盐的分子磁体的介质中的磁爆燃锋面的稳定性。结果表明,与前部塞曼能量的释放相比,如果磁体的能垒足够高,则相对于一维扰动,静态爆燃是不稳定的。如燃烧问题中所见,它们的比率可以解释为类似于Zeldovich数。当Zeldovich数超过某个临界值时,固定的爆燃前沿变得不稳定并以脉动状态传播。获得临界Zeldovich数的分析估计。通过求解特征值问题,对不稳定性的线性阶段进行了数值研究。使用直接数值模拟研究非线性阶段。讨论了脉动状态的实验观察所需的参数域。

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