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Visualizing the bidirectional optical transfer function for near-field enhancement in waveguide coupled plasmonic transducers

机译:可视化波导耦合等离子体换能器中的近场增强的双向光学传递函数

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We report visualizations of the bidirectional near-field optical transfer function for a waveguide-coupled plasmonic transducer as a metrology technique essential for successful development for mass-fabricated near-field devices. Plasmonic devices have revolutionized the observation of nanoscale phenomena, enabling optical excitation and readout from nanoscale regions of fabricated devices instead of as limited by optical diffraction. Visualizations of the plasmonic transducer modes were acquired both by local near-field excitation of the antenna on the front facet of a waveguide using the focused electron beam of a scanning electron microscope as a probe of the near-field cathodoluminescence during far-field collection from the back facet of the waveguide, and by local mapping of the optical near-field for the same antenna design using scattering scanning near-field optical microscopy as a probe of the near-field optical mode density for far-field light focused into the back facet of the waveguide. Strong agreement between both measurement types and numerical modeling was observed, indicating that the method enables crucial metrological comparisons of as fabricated device performance to as-modeled device expectations for heat-assisted magnetic recording heads, which can be extended to successful development of future near-field-on-chip devices such as optical processor interconnects.
机译:我们报告了波导耦合等离子体换能器的双向近场光学传递函数的可视化,作为对大规模制造的近场装置的成功开发的计量技术。等离子体装置彻底改变了纳米级现象的观察,从制造装置的纳米级区域实现光学激发和读出,而不是通过光学衍射的限制。通过使用扫描电子显微镜的聚焦电子束作为波导的聚焦电子束作为近场阴极发光的探针,通过扫描电子显微镜的局部近场激发来获取等压换能器模式的可视化。波导的后壳,以及通过散射扫描近场光学显微镜作为相同天线设计的光学近场的局部映射作为远场光的近场光学模式密度的探头集中在背面波导的方面。观察到两种测量类型和数值建模之间的强烈一致性,表明该方法使得作为制造的设备性能的关键计量比较对热辅助磁记录头的应用程序预期,这可以扩展到未来的成功开发 - 片上芯片设备,例如光学处理器互连。

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