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Picosecond optical vortex pulse illumination forms a monocrystalline silicon needle

机译:皮秒光学涡旋脉冲照明形成单晶硅针

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摘要

The formation of a monocrystalline silicon needle by picosecond optical vortex pulse illumination was demonstrated for the first time in this study. The dynamics of this silicon needle formation was further revealed by employing an ultrahigh-speed camera. The melted silicon was collected through picosecond pulse deposition to the dark core of the optical vortex, forming the silicon needle on a submicrosecond time scale. The needle was composed of monocrystalline silicon with the same lattice index (100) as that of the silicon substrate, and had a height of approximately 14 μm and a thickness of approximately 3 μm. Overlaid vortex pulses allowed the needle to be shaped with a height of approximately 40 μm without any changes to the crystalline properties. Such a monocrystalline silicon needle can be applied to devices in many fields, such as core–shell structures for silicon photonics and photovoltaic devices as well as nano- or microelectromechanical systems.
机译:这项研究首次证明了通过皮秒光学涡旋脉冲照明形成单晶硅针。通过使用超高速相机进一步揭示了这种硅针形成的动力学。通过皮秒脉冲沉积将熔化的硅收集到光学涡旋的暗核,在亚微秒级上形成硅针。针由具有与硅衬底相同的晶格指数(100)的单晶硅组成,并且具有约14μm的高度和约3μm的厚度。叠加的涡流脉冲使针头的形状约为40μm,而结晶特性没有任何变化。这种单晶硅针可以应用于许多领域的设备,例如硅光子学和光电设备的核-壳结构以及纳米或微机电系统。

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