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等离子体八聚体物体:无需背景辅助即可逆转近场光学结合力。

Plasmonic octamer objects: reversal of near-field optical binding force without the aid of backgrounds.

作者信息

Jani Rafsan, Das Saikat Chandra, Zahura Fatematuz, Islam Haniful, Al-Quaderi Golam Dastegir, Mahdy M R C

出版信息

Appl Opt. 2021 Nov 10;60(32):10124-10131. doi: 10.1364/AO.435982.

Abstract

In recent years, the near-field optical binding force has gained a lot of interest in the field of optical manipulation. The reversal of the near-field binding force, a new, to the best of our knowledge, kind of optical manipulation, has so far been investigated mostly between dimers and in a very few cases among tetramers by utilizing the help of suitable substrates or backgrounds. Until now, no known way to control the near-field optical binding force among octamer configurations has been found, to our knowledge. In this paper, we propose a plasmonic (silver) octamer configuration where we demonstrate the control and reversal (attraction and repulsion) of the near-field optical binding force of octamers by illuminating the system with a TM polarized Bessel beam. The control of the binding force and its reversal is explained based on the polarization and gradient forces created by the Bessel beam. As the aid of a background or substrate is not required, our proposed simplified approach has the potential to open up novel ways of manipulating multiple particles. Our investigation also implicitly suggests that for future research on controlling the reversal of the near-field optical binding force of multiple particles, Bessel beams can be the appropriate choice instead of plane waves.

摘要

近年来,近场光学结合力在光学操控领域引起了广泛关注。近场结合力的反转是一种全新的光学操控方式,据我们所知,目前主要研究了二聚体之间的情况,在极少数情况下也研究了四聚体之间的情况,借助了合适的基底或背景。据我们所知,到目前为止,尚未发现控制八聚体构型之间近场光学结合力的已知方法。在本文中,我们提出了一种等离子体(银)八聚体构型,通过用TM偏振贝塞尔光束照射该系统,我们展示了对八聚体近场光学结合力的控制和反转(吸引和排斥)。基于贝塞尔光束产生的偏振力和梯度力,对结合力的控制及其反转进行了解释。由于不需要背景或基底的辅助,我们提出的简化方法有可能开辟操纵多个粒子的新途径。我们的研究还隐含地表明,对于未来控制多个粒子近场光学结合力反转的研究,贝塞尔光束可能是比平面波更合适的选择。

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