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Optical tweezing and binding at high irradiation powers on black-Si

机译:在黑硅上以高辐照功率进行光镊和粘合

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摘要

Nowadays, optical tweezers have undergone explosive developments in accordance with a great progress of lasers. In the last decade, a breakthrough brought optical tweezers into the nano-world, overcoming the diffraction limit. This is called plasmonic optical tweezers (POT). POT are powerful tools used to manipulate nanomaterials. However, POT has several practical issues that need to be overcome. First, it is rather difficult to fabricate plasmonic nanogap structures regularly and rapidly at low cost. Second, in many cases, POT suffers from thermal effects (Marangoni convection and thermophoresis). Here, we propose an alternative approach using a nano-structured material that can enhance the optical force and be applied to optical tweezers. This material is metal-free black silicon (MFBS), the plasma etched nano-textured Si. We demonstrate that MFBS-based optical tweezers can efficiently manipulate small particles by trapping and binding. The advantages of MFBS-based optical tweezers are: (1) simple fabrication with high uniformity over wafer-sized areas, (2) free from thermal effects detrimental for trapping, (3) switchable trapping between one and two - dimensions, (4) tight trapping because of no detrimental thermal forces. This is the NON-PLASMONIC optical tweezers.
机译:如今,随着激光的巨大进步,光镊已经经历了爆炸性的发展。在过去的十年中,一项突破将光镊引入了纳米世界,克服了衍射极限。这称为等离子光镊(POT)。 POT是用于操纵纳米材料的强大工具。但是,POT有几个需要解决的实际问题。首先,很难以低成本快速且规则地制造等离子体纳米间隙结构。其次,在许多情况下,POT会遭受热效应(Marangoni对流和热泳)。在这里,我们提出了一种使用纳米结构材料的替代方法,该方法可以增强光学力并将其应用于光学镊子。这种材料是无金属的黑硅(MFBS),即等离子刻蚀的纳米织构硅。我们证明基于MFBS的光镊可以通过捕获和结合有效地操纵小颗粒。基于MFBS的光镊的优点是:(1)晶圆尺寸区域的制造简单,均一性高;(2)不受有害的热效应的影响;(3)一维和二维之间可切换的陷波;(4)因为没有有害的热力,所以紧密捕集。这是NON-PLASMONIC光学镊子。

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