Vectorial structure of nonparaxial electromagnetic beams
Rosario Martínez-Herrero, Pedro M. Mejías, Salvador Bosch, Artur Carnicer
Abstract
Rosario Martínez-Herrero, Pedro M. Mejías, Salvador Bosch, Artur Carnicer
Abstract
A representation of the general solution of the Maxwell equations is proposed in terms of the plane-wave spectrum of the electromagnetic field. In this representation the electric field solution is written as a sum of two terms that are orthogonal to each other at the far field: One is transverse to the propagation axis, and the magnetic field associated with the other is also transverse. The concept of the so-called closest field to a given beam is introduced and applied to the well-known linearly polarized Gaussian beam.
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A representation of the general solution of the Maxwell equations is proposed in terms of the plane-wave spectrum of the electromagnetic field. In this representation the electric field solution is written as a sum of two terms that are orthogonal to each other at the far field: One is transverse to the propagation axis, and the magnetic field associated with the other is also transverse. The concept of the so-called closest field to a given beam is introduced and applied to the well-known linearly polarized Gaussian beam.
Key concepts: Physics, Angular spectrum method, Electromagnetic field, Optical field, Transverse plane, Plane wave, Maxwell's equations, Field (mathematics)