2004Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIERequires access

Electromagnetic degree of coherence in space-time and space-frequency domains

Tero Setälä, Jani Tervo, Ari T. Friberg

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Abstract

In this work, we apply a recently introduced electromagnetic degree of coherence to address the coherence properties of random, stationary electromagnetic fields. In particular, we consider the limit of complete coherence in space-frequency and space-time domains. We show that in both domains the (electric) coherence tensor is analogous, in its spatial and temporal structure, to the coherence function of fully coherent scalar fields. The results are important in the rigorous electromagnetic theory of optical coherence, as encountered, e.g., in non-paraxial near fields and diffractive optics.

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What this paper is about

In this work, we apply a recently introduced electromagnetic degree of coherence to address the coherence properties of random, stationary electromagnetic fields. In particular, we consider the limit of complete coherence in space-frequency and space-time domains. We show that in both domains the (electric) coherence tensor is analogous, in its spatial and temporal structure, to the coherence function of fully coherent scalar fields. The results are important in the rigorous electromagnetic theory of optical coherence, as encountered, e.g., in non-paraxial near fields and diffractive optics.

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Available abstract

In this work, we apply a recently introduced electromagnetic degree of coherence to address the coherence properties of random, stationary electromagnetic fields. In particular, we consider the limit of complete coherence in space-frequency and space-time domains. We show that in both domains the (electric) coherence tensor is analogous, in its spatial and temporal structure, to the coherence function of fully coherent scalar fields. The results are important in the rigorous electromagnetic theory of optical coherence, as encountered, e.g., in non-paraxial near fields and diffractive optics.

Key concepts: Coherence (philosophical gambling strategy), Coherence theory, Degree of coherence, Coherence time, Paraxial approximation, Electromagnetic field, Physics, Coherence length

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