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Electromagnetic theory of optical coherence [Invited]

机译:光学相干电磁理论[特邀]

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摘要

The coherence theory of random, vector-valued optical fields has been of great research interest in recent years. In this work we formulate the foundations of electromagnetic coherence theory both in the space-time and space-frequency domains, with particular emphasis on various types of optical interferometry. Analyzing statistically stationary, two-component (paraxial) electric fields in the classical and quantum-optical contexts we show fundamental connections between the conventional (polarization) Stokes parameters and the associated two-point (coherence) Stokes parameters. Measurement of the coherence and polarization properties of random vector beams by nanoparticle scattering and two-photon absorption is also addressed. (C) 2016 Optical Society of America
机译:近年来,随机,矢量值光场的相干理论引起了极大的研究兴趣。在这项工作中,我们为时空和时频领域的电磁相干理论奠定了基础,尤其着重于各种类型的光学干涉仪。在经典和量子光学环境中分析统计上静态的两分量(近轴)电场,我们显示了常规(极化)斯托克斯参数与关联的两点(相干)斯托克斯参数之间的基本联系。还讨论了通过纳米粒子散射和双光子吸收来测量随机矢量束的相干和偏振特性。 (C)2016美国眼镜学会

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