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High Rate 3D Nanofabrication by AFM-Based Ultrasonic Vibration Assisted Nanomachining

机译:基于AFM的超声波振动辅助纳米机的高速3D纳米制作

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This paper introduces a high precision 3D nanofabrication approach using ultrasonic vibration assisted nanomachining using an AFM operating in constant height control mode. Nanostructures with 3D features were successfully fabricated on PMMA film with the feature height manipulated through controlling the absolute heights of z-scanner in AFM. Two methods were used to move the AFM tip to create desire features, vector mode and raster scan mode. Relatively simple features, such as stair-like nanostructure with five steps was successfully fabricated in vector mode. Complex nanostructure with discrete height levels and continuous changes were successfully fabricated in raster scan mode. By carefully selecting the machining parameters, the feature dimension and height can be precisely controlled with only small variation from the designed value. Moreover, this paper explores the capability of transferring 3D nanostructures from PMMA film onto silicon substrate. After calibrating the recipe of Reactive Ion Etching (RIE) process, 3D nanostructures are successfully transferred to silicon wafer with controllable selectivity between PMMA and silicon. The results of fabricating 3D structures on silicon substrates show promising potential of many applications, such as mold preparation in nanoimprint lithography.
机译:本文介绍了一种高精度的3D纳米制作方法,使用超声振动辅助纳米机使用恒定高度控制模式运行的AFM。在PMMA膜上成功地制造具有3D特征的纳米结构,其具有通过控制AFM中Z-Scanner的绝对高度来操纵的特征高度。使用两种方法移动AFM尖端以创建欲望功能,矢量模式和光栅扫描模式。相对简单的特征,例如具有五个步骤的楼梯状纳米结构以载体模式成功制造。复合纳米结构具有离散高度水平和连续变化,以光栅扫描模式成功制造。通过仔细选择加工参数,可以精确地控制特征尺寸和高度,只能从设计值中的小变化。此外,本文探讨了将3D纳米结构从PMMA膜转移到硅衬底上的能力。在校准反应离子蚀刻(RIE)过程的配方之后,3D纳米结构成功转移到具有PMMA和硅之间的可控选择性的硅晶片。制造硅基板上的3D结构的结果显示了许多应用的有希望的潜力,例如纳米压印光刻中的模具制剂。

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