论文标题

观察光定位的基本限制

Observation of Fundamental Limit of Light Localization

论文作者

Shafiei, Farbod, Masir, Massoud R., Orzali, Tommaso, Vert, Alexey, Wong, Man Hoi, Bersuker, Gennadi, Downer, Michael C.

论文摘要

在无序的介质中,可以将光定位在散射位点之间的空间中,这些散射位点平均为光学平均自由路径(MFP)。但是,由于具有控制纳米尺度差距的散射培养基的制造复杂性,并且缺乏远场方法所需的分辨率,因此最小的MFP的基本问题仍未得到支持。在这里,我们使用扫描探针显微镜技术收集在散射晶体学缺陷之间在各种纳米间隙III-V培养基中产生的局部光。在390 nm的第二谐波收集处,没有观察到与低于14.5 nm的MFP相关的局部斑点。实验和仿真导致对安德森光定位抑制的首次直接观察与〜13 nm光学MFP相关,这揭示了电磁和光子学的基本约束。

In disordered media light can be localized in the spaces between scattering sites which average to an optical mean free path (MFP). However the fundamental question of the smallest MFP that can support Anderson localization of light remains unanswered due to fabrication complexity of a scattering medium with controlled nano-scale gaps and lack of required resolution by far-field methods. Here we use scanning probe microscopy technique to collect localized light created at gaps between scattering crystallographic defects in a large variety set of nano-gap III-V medium. No localized spots correlated to MFP below ~14.5 nm is observed at second-harmonic collection at 390 nm. Experiment and simulation resulted in the first direct observation of suppression of Anderson light localization correlated to ~13 nm optical MFP that reveals a fundamental constraint in electromagnetism and photonics.

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