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纳米狭缝处由局部电子浓度引起的有效折射率空间分布的定量测量。

Quantitative measurement of spatial distribution of effective refractive index induced by local electron concentration at a nano slit.

作者信息

Kim Dae Hee, Park Young Ho, Park Jun Hyung, Nguyen Duy-Anh, Yoo Hongki, Kim Seungchel, Kim Young-Jin

机构信息

Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Daejeon, Republic of Korea.

Department of Optics and Mechatronics Engineering, College of Nanoscience and Nanotechnology, Pusan National University, Busan 46241, Republic of Korea.

出版信息

Nanophotonics. 2024 Jun 3;13(19):3699-3708. doi: 10.1515/nanoph-2024-0179. eCollection 2024 Aug.

Abstract

Surface plasmon polaritons (SPPs) have found their key applications in high-sensitivity biomolecular detection and integrated photonic devices for optical communication via light manipulation at nanostructures. Despite their broad utility, SPPs are known to be accompanied by other complex near-field propagation modes, such as quasi-cylindrical waves (QCWs) and composite diffracted evanescent waves (CDEWs), whose electromagnetic and quantum propagation effects have not been comprehensively understood especially regarding their mutual interaction with SPPs. In this study, we addressed this complexity by employing a nano groove structure and a high-stability broadband femtosecond laser as a light source, the spatial phase distribution around the nano slit edge was measured with relative stability of a 4.6 × 10 at an averaging time of 0.01 s. Through this spatial phase spectrum, we precisely measured the nonlinear distribution of effective refractive index changes with an amplitude of 10 refractive index units at the edge of the nano slit-groove structure. These results reveal that the near-field effects on local electron concentration induced by nanostructure's discontinuity can be quantitatively measured, which can contribute to a deeper understanding of SPP phenomena in nanostructures for the optimal design and utilization of the SPP effects in diverse nano-plasmonic applications.

摘要

表面等离激元极化激元(SPPs)已在高灵敏度生物分子检测以及通过纳米结构光操控实现光通信的集成光子器件中找到了关键应用。尽管它们有广泛的用途,但已知SPPs会伴随着其他复杂的近场传播模式,如准圆柱波(QCWs)和复合衍射倏逝波(CDEWs),其电磁和量子传播效应尚未得到全面理解,尤其是它们与SPPs的相互作用。在本研究中,我们通过采用纳米凹槽结构和高稳定性宽带飞秒激光作为光源来解决这种复杂性,在平均时间为0.01 s时,以4.6×10的相对稳定性测量了纳米狭缝边缘周围的空间相位分布。通过该空间相位谱,我们精确测量了纳米狭缝 - 凹槽结构边缘处有效折射率变化的非线性分布,其幅度为10个折射率单位。这些结果表明,可以定量测量纳米结构不连续性对局部电子浓度的近场效应,这有助于更深入地理解纳米结构中的SPP现象,以便在各种纳米等离子体应用中对SPP效应进行优化设计和利用。

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