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Concept of Free Acoustic Field

机译:自由声场的概念

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Aims/ Objectives: To develop the concept of the acoustic field and to give the practical recommendations of its using.Study Design: The theory of functions of complex variable and the developed Dirac quantisation method were used.Place and Duration of Study: Heat-Mass Transfer Institute of National Academy of Sciences of RB, M.V.Lomonosov Moscow State University, between November 2013 and January 2014.Methodology: We have used generalised Cauchy-Riemann conditions for the case of a mixed vector-scalar argument in functions of complex variable and the earlier developed Dirac quantisation method.Results: The equations of the free acoustic field are derived. They coincide in the mathematical form with the first two Maxwell equations for the free electromagnetic (EM) field. It is accentuated, that the equations in the mathematical form of the first two Maxwell equations for the free EM-field are universal equations of the Nature. They describe an any free complex-vector physical field, vector-functions of which are analytical functions. In the case of FA-field, it seems to be the strong indication taking into account the quantum Fermi liquid model of EM-field leading to the existence of phonons, accompanying the process of a photon formation, that FA-field and free EM-field are the display of the single united field, both the components of which can propagate simultaneously [however, with different velocities], for instance, in weakly absorbing media.Conclusion: The theory proposed can be the theoretical basis for the practical realization of high temperature [room temperature and higher] superconducting states in the materials with the strong interaction of electrons with acoustic field phonons and with radiofrequency photons in magnetic resonance conditions.
机译:目的/目标:发展声场的概念并提供实用的建议研究设计:使用复变函数理论和发达的Dirac量化方法研究的地点和持续时间:热质莫斯科罗蒙诺索夫莫斯科国立大学RB国家科学院转移研究所,2013年11月至2014年1月。方法:对于复变量和函数的混合矢量-标量参数的情形,我们使用了广义Cauchy-Riemann条件。结果:推导了自由声场的方程。它们在数学形式上与自由电磁(EM)场的前两个麦克斯韦方程式重合。值得注意的是,自由电磁场的前两个麦克斯韦方程的数学形式的方程是自然界的通用方程。他们描述了任何自由的复矢量物理场,其矢量函数是解析函数。在FA场的情况下,考虑到EM场的量子费米液体模型导致声子的存在,伴随着光子的形成过程,似乎是一个有力的指示,FA场和自由EM-场是单个联合场的显示,例如,在弱吸收介质中,这两个场都可以同时传播[但是,以不同的速度传播。]结论:所提出的理论可以为高能量的实际实现提供理论依据。在磁共振条件下,电子与声场声子和射频光子的强相互作用会导致材料中的温度(室温及更高温度)超导状态。

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