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首页> 外文期刊>Applied optics >OPTICAL PROPERTIES OF SILICON-NITRIDE ATOMIC-FORCE-MICROSCOPY TIPS IN SCANNING TUNNELING OPTICAL MICROSCOPY - EXPERIMENTAL STUDY
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OPTICAL PROPERTIES OF SILICON-NITRIDE ATOMIC-FORCE-MICROSCOPY TIPS IN SCANNING TUNNELING OPTICAL MICROSCOPY - EXPERIMENTAL STUDY

机译:硅氮化物原子力显微镜在扫描隧道光学显微镜中的光学特性-实验研究

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摘要

Atomic-force SiN probe tips (atomic-force microscopy) can be conveniently used for scanning-tunneling-optical-microscopy experiments because of their transparency in the visible domain. They are known to provide a satisfying transmission yield and spatial resolution in spite of their complex structural shape. Nevertheless the photon collection mechanism is not so clearly understood. We give some experimental information on the conversion of the evanescent waves into a propagating mode; we show experimentally (1) that optical coupling satisfactorily obeys a classical global and macroscopic dielectric model, and (2) that the collected photons dominantly follow the photon momentum conservation rule that makes these devices directionally selective. [References: 27]
机译:原子力SiN探针尖端(原子力显微镜)可方便地用于扫描隧道光学显微镜实验,因为它们在可见域中具有透明性。尽管它们具有复杂的结构形状,但它们仍可提供令人满意的透射率和空间分辨率。然而,光子收集机制还不是很清楚。我们提供了一些有关information逝波转换为传播模式的实验信息;我们通过实验证明(1)光学耦合令人满意地遵循经典的全局和宏观介电模型,并且(2)所收集的光子主要遵循使这些设备具有方向选择性的光子动量守恒定律。 [参考:27]

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