Mechanisms for optical binding

Mechanisms for optical binding
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光学结合机制

DOI:
10.1117/12.827983
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发表时间:
2009
期刊:
--
影响因子:
--
通讯作者:
Andrews D
Andrews D
中科院分区:
--
文献类型:
--
作者:
Andrews D

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光学束缚现象现在已经在实验上得到了很好的证实。随着对收集和组织光学阱中的颗粒的设施的认识,相关术语“光学物质”也越来越流行,突出了光学诱导的颗粒间力和其他相互作用(如化学键合和分散力)之间的重要相互作用的可能性。光学绑定本身有多种解释。由于这些解释中的一些比其他解释更突出,并且它们的适用性在某种程度上取决于所涉及的粒子的性质,这些解释的列表必须包括以下内容:集体散射,激光修饰的卡西米尔力,虚光子耦合,光诱导偶极共振和等离子体共振耦合。这是本文的目的,审查和建立这些理论描述之间的基本联系的程度,认识到每一个在有关的光学结合的现象,其他更广泛的背景下,密切相关的物理测量的价值。
The phenomenon of optical binding is now experimentally very well established. With a recognition of the facility to collect and organize particles held in an optical trap, the related term 'optical matter' has also been gaining currency, highlighting possibilities for a significant interplay between optically induced inter-particle forces and other interactions such as chemical bonding and dispersion forces. Optical binding itself has a variety of interpretations. With some of these explanations being more prominent than others, and their applicability to some extent depending on the nature of the particles involved, a listing of these has to include the following: collective scattering, laser-dressed Casimir forces, virtual photon coupling, optically induced dipole resonance, and plasmon resonance coupling. It is the purpose of this paper to review and to establish the extent of fundamental linkages between these theoretical descriptions, recognizing the value that each has in relating the phenomenon of optical binding to the broader context of other, closely related physical measurements.
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