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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Optically induced inter-particle forces: from the bonding of dimers to optical electrostriction in molecular solids
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Optically induced inter-particle forces: from the bonding of dimers to optical electrostriction in molecular solids

机译:光学诱导的粒子间作用力:从二聚物的键合到分子固体中的光电致伸缩

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摘要

The quantum electrodynamical formulation of the Casimir-Polder interaction invites a consideration of optically induced inter-particle forces, which arise in the same level of perturbation theory. For the observation of such effects, quantitative assessments of the coupling mechanism suggest levels of intensity that are now routinely available from pulsed lasers. In this paper, a theoretical analysis of the principal mechanism is followed by a development for two specific systems, chosen to illustrate the broad significance and the range of systems in which such effects might be manifest. The first system is a van der Waals dimer, a loosely bound and essentially isolated molecular pair in which a small optically induced shift in the equilibrium bond length proves to be well within the limits of measurement by microwave rotational spectroscopy. The second system illustrates the opposite extreme, where an optically induced modification of the forces between densely packed molecules in the condensed phase is shown to produce anisotropic patterns of laser-induced compression and expansion, an effect termed optical electrostriction. Again, such an effect should be readily measurable, although the necessary conditions are such that a number of secondary effects might also be likely to arise. The experimental challenge of precluding those secondary effects in the condensed phase and unequivocally identifying optically induced intermolecular forces is discussed. Possible applications are also entertained, including optical actuators for nanoscale electromechanical systems.
机译:Casimir-Polder相互作用的量子电动力学公式引起了对光诱导的粒子间作用力的考虑,该作用力以相同的摄动理论水平出现。为了观察这种影响,对耦合机理的定量评估表明了现在可以从脉冲激光器中常规获得的强度水平。在本文中,对主要机理进行了理论分析,然后开发了两个特定的系统,以说明这种影响的广泛意义和范围。第一个系统是Van der Waals二聚体,它是一个松散结合的且基本分离的分子对,其中平衡键长的光诱导小位移证明在微波旋转光谱法的测量范围内。第二个系统说明了相反的极端情况,在该极端情况下,在凝聚相中密集堆积的分子之间的力的光学诱导修饰显示为产生激光诱导的压缩和膨胀的各向异性模式,这种效应称为光学电致伸缩。同样,这种效果应该易于测量,尽管必要条件使得可能还会出现许多次要效果。讨论了在凝结阶段排除那些次要作用并明确识别光学诱导的分子间力的实验挑战。还可能出现了可能的应用,包括用于纳米级机电系统的光学致动器。

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