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Engineering of slow Bloch modes for optical trapping

机译:用于光陷波的慢Bloch模式工程

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摘要

In the present paper, we propose an approach based on slow Bloch mode microcavity that enables the optical trapping of small nanoparticles over a broad surface. A specific design based on a double-period photonic crystal is presented. It enables an easy coupling using a wide free-space Gaussian beam and the cavity Q factor can be tuned at will. Moreover, the microcavity mode is mainly localized within the photonic crystal holes, meaning that each hole of the microcavity behaves as efficient nanotweezers. Experimental studies have shown that 200 nm and 100 nm particles can be trapped within the microcavity, in a spatial region that corresponds to the size of one hole (200 nm wide). The experimental trap stiffness has been extracted. It shows that this approach is among the most performant ones if we take into account the size of the cavity.
机译:在本文中,我们提出了一种基于慢Bloch模式微腔的方法,该方法可以在宽广的表面上捕获小纳米颗粒。提出了一种基于双周期光子晶体的具体设计。它可以使用宽自由空间的高斯光束轻松耦合,并且可以随意调整腔Q因子。此外,微腔模式主要位于光子晶体孔内,这意味着微腔的每个孔都表现为高效的纳米镊子。实验研究表明,200 nm和100 nm的粒子可以被捕获在微腔内的空间区域中,该空间区域对应于一个孔的大小(宽200 nm)。实验陷阱的刚度已被提取。它表明,如果考虑空腔的大小,这种方法是性能最高的方法之一。

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  • 来源
    《Applied Physics Letters》 |2015年第12期|121110.1-121110.4|共4页
  • 作者单位

    Institut des Nanotechnologies de Lyon (INL), CNRS UMR5270, Universite de Lyon, INSA-Lyon, Bat 'Blaise Pascal,' 7 avenue Jean Capelle, Villeurbanne F-69621, France;

    Institut des Nanotechnologies de Lyon (INL), CNRS UMR5270, Universite de Lyon, INSA-Lyon, Bat 'Blaise Pascal,' 7 avenue Jean Capelle, Villeurbanne F-69621, France,Laboratoire de chimie organo-metallique et medicinal (LCOM), EPFL, CH-1015 Lausanne, Switzerland;

    Institut des Nanotechnologies de Lyon (INL), CNRS UMR5270, Universite de Lyon, INSA-Lyon, Bat 'Blaise Pascal,' 7 avenue Jean Capelle, Villeurbanne F-69621, France;

    Institut des Nanotechnologies de Lyon (INL), CNRS UMR5270, Universite de Lyon, INSA-Lyon, Bat 'Blaise Pascal,' 7 avenue Jean Capelle, Villeurbanne F-69621, France;

    Institut des Nanotechnologies de Lyon (INL), CNRS UMR5270, Ecole Centrale de Lyon, 36 avenue Guy de Collongue, Ecully F-69134, France;

    Institut des Nanotechnologies de Lyon (INL), CNRS UMR5270, Ecole Centrale de Lyon, 36 avenue Guy de Collongue, Ecully F-69134, France;

    Institut des Nanotechnologies de Lyon (INL), CNRS UMR5270, Ecole Centrale de Lyon, 36 avenue Guy de Collongue, Ecully F-69134, France;

    Institut des Nanotechnologies de Lyon (INL), CNRS UMR5270, Universite de Lyon, INSA-Lyon, Bat 'Blaise Pascal,' 7 avenue Jean Capelle, Villeurbanne F-69621, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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