Probing optical mode structures in a photonic crystal using a near-field scanning optical microscope

J. Hsu, E. B. McDaniel, L. Goldner, R. J. Tonucci, E. L. Shirley, G. Bryant
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Abstract

We probe the optical mode structure of a two-dimensional triangular photonic crystal using a near-field scanning optical microscope (NSOM). Light from the subwavelength NSOM aperture was coupled through the nanochannel glass (NCG) array photonic crystal and collected in the far-field using a microscope objective. The optical intensity variations as a function of positions in a unit cell were recorded as the sample was moved with respect to the NSOM aperture. We varied the excitation frequency of the NSOM light and the collection objective numerical aperture (NA), in order to distinguish the relation between reciprocal lattice wave-vectors and the transverse momenta of the photons responsible for the NSOM image.
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用近场扫描光学显微镜探测光子晶体中的光学模式结构
利用近场扫描光学显微镜(NSOM)研究了二维三角形光子晶体的光学模式结构。亚波长NSOM孔径的光通过纳米通道玻璃(NCG)阵列光子晶体耦合,并利用显微镜物镜收集远场光。当样品相对于NSOM孔径移动时,记录了光学强度变化作为单元格中位置的函数。我们改变了NSOM光的激发频率和采集物镜的数值孔径(NA),以区分互反晶格波矢量与负责NSOM图像的光子的横向动量之间的关系。
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