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极化是电磁波的重要特性,在卫星广播、无线通信、雷达、航空航天遥感等领域中有着广泛的应用.本文分析了均匀平面电磁波极化的成因,呈现了极化的物理图像,讨论了电磁波极化的一些实际应用. 相似文献
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K. Yu. Bliokh Yu. P. Stepanovskii 《Journal of Experimental and Theoretical Physics》2003,97(3):479-484
Propagation of an electromagnetic wave in a smooth one-dimensionally inhomogeneous isotropic medium is considered in the second approximation of geometrical optics. The polarization evolution is studied extensively. It is known that in the first (Rytov) approximation of geometrical optics, there is only the rotation of the plane of polarization (with no change in the polarization shape and sign) for rays with torsion. In the case considered, both the shape of polarization ellipse and the sign of polarization change proportionally to the integral of the squared ray curvature even for plane rays. The effect is of nonlocal geometrical nature and can be described in terms of the generalized geometrical phase incursion between two linear polarizations. 相似文献
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V. M. Serdyuk 《Technical Physics》2006,51(6):777-785
The problem of diffraction of a plane electromagnetic wave by a slot in a planar perfectly conducting arbitrary thick screen with an infinite planar dielectric layer passing through the slot transversely to the screen is solved rigorously. In each of the field existence domains (two domains on either side of the screen and the interior of the slot), the solution is represented as an expansion in piecewise harmonic or exponential modes that allow for reflection and refraction at the boundaries of the dielectric layer. It is found that a set of functions describing such modes is complete enough to construct a solution satisfying all boundary conditions of the diffraction problem. The procedures of solution construction for the case at hand and for the same diffraction structure without the dielectric layer are compared. 相似文献
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在给出平面波偏振旋转方向定义的基础上写出电磁波的几种表示方式,并以其中某些量的性质来判断波的偏振旋转方向。在物理教学中也可体现出这种定义的优越性。 相似文献
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One-sided approximate impedance-type boundary conditions for a thin chiral layer placed on a perfectly conducting plane are
derived. With these conditions, the problem of incidence of a plane electromagnetic wave on a chiral structure is solved.
Approximate formulas for the coefficients of reflection of the fundamental and depolarized components are derived for the
case of the perpendicular polarization of the electromagnetic wave (the electric field strength is normal to the plane of
incidence). A comparison with an exact solution to the problem of diffraction by this chiral structure is made. 相似文献
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We discuss the nonlinear propagation of relativistically intense electromagnetic waves into collisionless plasmas with special
emphasis on one dimensional plane wave solutions of the propagating, standing and modulated types. These solutions exhibit
a rich variety of phenomena associated with relativistic electron mass variation and coupling between transverse electromagnetic
and longitudinal fields. They have important applications to problems of laser propagation, self-focusing in overdense plasmas,
particle and photon acceleration and to electromagnetic radiation around pulsars. 相似文献
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