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Propagation of the electromagnetic field in fully coated near-field optical probes

机译:全涂层近场光学探头中电磁场的传播

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摘要

Fully metal-coated near-field optical probes, based on a cantilever design, have been studied theoretically and experimentally. Numerical simulations prove that these structures allow nonzero modal emission of the electromagnetic field through a 60-nm-thick metallic layer, that is opaque when deposited on flat substrates. The far-field intensity patterns recorded experimentally correspond to the ones calculated for the fundamental and first excited modes. Moreover, this study demonstrates that a high confinement of the electromagnetic energy can be reached in the near-field, when illuminated with radially polarized light. Finally, it was verified that the confinement of the field depends on the volume of the probe apex.
机译:基于悬臂设计的全金属涂层近场光学探头已经在理论和实验上进行了研究。数值模拟证明,这些结构允许电磁场通过60纳米厚的金属层以非零模态发射,当沉积在平坦基板上时该金属层是不透明的。实验记录的远场强度模式对应于为基本和第一激发模式计算的模式。此外,这项研究表明,当使用径向偏振光照射时,可以在近场中达到电磁能量的高度限制。最后,证实了场的限制取决于探针顶点的体积。

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