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On the theory of spatial localization of photons

机译:关于光子的空间定位理论

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In the quantum physics of near-field optics and optical tunneling light-matter interactions are studied on a length scale (much) smaller than the wavelength of light, and questions regarding the possibilities for strong spatial localization of electromagnetic fields are here in focus. Some of these questions relate to the spatial resolution problem in optics, a problem which has gained considerable attention in connection to optical investigations of mesoscopic systems. Optics beyond the classical diffraction limit has renewed our interest in the various theories for spatial localization of single photons. In the present work aspects of these theories of particular importance for light-matter interaction on the microscopic and mesoscopic length scales are reviewed. Photon wave mechanics, i.e. the (rather unknown) first quantized theory of the photon, allows us to address the spatial field localization problem in a flexible manner which links smoothly to classical electromagnetics. The wave mechanics of free photons is discussed both in the momentum-time domain (Part A) and in the space-time domain (Part B). The first-quantized theory of spatial localization of photons subjected to field-matter interaction is described in Part C, paying particular attendance to the so-called photon energy wave function concept. In Part D, the spatial localization of photons are studied on a field theoretic (second-quantized) basis. The coarse-grained photon localization theory and the spatial localization perceived in various representations (gauges) here are core issues. In the two last parts of the review I describe photon fields in near-field optics (Part E), and the optical tunneling phenomenon, here seen as a fingerprint of weak photon localizability (Part F). © 2005 Elsevier B.V. All rights reserved.
机译:在近场光学和光隧道的量子物理学中,以小于光波长的长度尺度(远大于)研究了光与物质的相互作用,并且这里重点讨论了有关电磁场强空间定位的可能性的问题。这些问题中的一些与光学中的空间分辨率问题有关,该问题在介观系统的光学研究中引起了极大的关注。超越经典衍射极限的光学已经使我们对单光子空间定位的各种理论产生了兴趣。在目前的工作中,这些理论对于微观和介观长度尺度上的光-物质相互作用特别重要。光子波力学,即光子的(相当未知的)第一个量子化理论,使我们能够灵活地解决空间场定位问题,该问题可以平滑地链接到经典电磁学。在动量时域(A部分)和时空域(B部分)中都讨论了自由光子的波力学。在第C部分中描述了经受场-质相互作用的光子的空间定位的第一个理论,特别注意了所谓的光子能量波函数概念。在D部分中,基于场论(第二量化)研究了光子的空间定位。这里的核心问题是粗粒光子定位理论和在各种表示形式(量规)中感知到的空间定位。在本综述的最后两个部分中,我描述了近场光学中的光子场(E部分)和光隧道现象,在这里被视为弱光子定位性的指纹(F部分)。 &复制; 2005 Elsevier B.V.保留所有权利。

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