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Propagation of self-confinement light radiation in inhomogeneous air

机译:自约束光辐射在不均匀空气中的传播

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Propagation in the air atmosphere of a self-confined spherical layer (SSL) with fife time measured in tens of seconds is considered. It is shown that SSL moves along the gradient of the air density and is deformed due to self-action effects connected with heating near objects and the surrounding air between the SSL and objects. As a result, SSL can penetrate through a tunnel which cross-section is smaller than the SSL diameter. Further, SSL can penetrate through a plane glass plate. It turns out that properties of the SSL are similar to the most puzzling and intriguing properties of ball lightning. Both objects are very sensitive to the inhomogeneity of the air density and the behaviour of the ball lightning based on stories of observers coincides with the behaviour of SSL based on application of well-known physical effects. The physical phenomena responsible for the stable existence of SSL are discussed. It is shown that an intense light circulating in the SSL increases the air refraction index on account of the self-action effect. As a result, the fight circulates in an optical dielectric resonator formed by the same fight. [References: 7]
机译:考虑了自封闭球形层(SSL)在空气中的传播,其起泡时间以数十秒为单位。结果表明,SSL沿着空气密度的梯度移动并由于与物体附近以及SSL和物体之间的周围空气加热相关的自作用效应而变形。结果,SSL可以穿过横截面小于SSL直径的隧道。此外,SSL可以穿透平板玻璃板。事实证明,SSL的属性类似于球形闪电最令人费解和令人着迷的属性。这两个物体都对空气密度的不均匀性非常敏感,基于观察者故事的球形闪电的行为与基于众所周知的物理效应的SSL行为一致。讨论了负责SSL稳定存在的物理现象。结果表明,由于自作用效应,在SSL中循环的强光会增加空气折射率。结果,搏斗在由相同搏斗形成的光学介质谐振器中循环。 [参考:7]

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