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Numerical simulation investigation of near-field enhancement and field-induced effect on nanoprobe irradiated by annular laser beam

机译:环形激光束对纳米探针的近场增强和场致效应的数值模拟研究

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A simulation study of near-field enhancement on nanoprobe irradiated by annular laser beam is reported. Various nanofabrication, such as nano-welding, nano-manipulation and nano-etching, are produced on metal, semiconductor films and bulk by using the enhanced near-field underneath a probe irradiated by a laser beam. The simulation results show that comparing with the traditional single Gaussian beam, energy distribution of annular laser beam is much more uniform. The results indicate that near-field enhancement on nanoprobe irradiated by annular laser beam is much stronger than by single Gaussian beam. In addition, the relationship between wavelength and the field-induced effect such as temperature, stress and displacement in Z axis is explored. The results show that the shorter the wavelength, the higher the temperature of the probe and the greater the change in stress and deformation. Based on the simulation of the near field enhancement and the field-induced effect, a new scheme combining with annular laser beam and a nanoprobe is anticipated in nano-fabrication.
机译:报道了环形激光束辐照纳米探针近场增强的模拟研究。通过在激光束照射下的探针下方使用增强的近场,可以在金属,半导体膜和块体上进行各种纳米加工,例如纳米焊接,纳米处理和纳米蚀刻。仿真结果表明,与传统的单高斯光束相比,环形激光束的能量分布更加均匀。结果表明,环形激光束对纳米探针的近场增强作用远强于单高斯光束。另外,还探讨了波长与温度,应力和Z轴位移等场致效应之间的关系。结果表明,波长越短,探头的温度越高,应力和变形的变化越大。基于对近场增强和场致效应的仿真,在纳米加工中有望实现一种结合环形激光束和纳米探针的新方案。

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