论文标题

光致发光控制的拓扑纳米光子学

Topological nanophotonics for photoluminescence control

论文作者

Tripathi, Aditya, Kruk, Sergey, Shang, Yunfei, Zhou, Jiajia, Kravchenko, Ivan, Jin, Dayong, Kivshar, Yuri

论文摘要

稀土掺杂的纳米晶体是用于人类通过化学和材料科学控制其各种光学特性的纳米技术应用的新兴光源。但是,一个重要的光学问题 - 光致发光的极化 - 在很大程度上通过化学方法失控。可以通过将发射器耦合到谐振纳米结构(如光天线和元信息)来获得对光致发光极化的控制。但是,所得的极化通常对发射器的位置障碍敏感,这很难缓解。最近,在拓扑光子学的框架内探索了新的疾病免疫光学系统。在这里,我们探索MIE共振纳米颗粒的障碍拓扑阵列,以控制纳米晶体光致发光的极化。我们证明了由光子拓扑边缘状态由介电谐振器支撑的光子拓扑边缘状态支配的稀有掺杂纳米晶体的极化发射。我们通过比较纳米甲孔子的二极化纳米颗粒的发射来验证两极分化光致发光的拓扑来源。

Rare-earth doped nanocrystals are emerging light sources used for many applications in nanotechnology enabled by human ability to control their various optical properties with chemistry and material science. However, one important optical problem -- polarisation of photoluminescence -- remains largely out of control by chemistry methods. Control over photoluminescence polarisation can be gained via coupling of emitters to resonant nanostructures such as optical antennas and metasurfaces. However, the resulting polarization is typically sensitive to position disorder of emitters, which is difficult to mitigate. Recently, new classes of disorder-immune optical systems have been explored within the framework of topological photonics. Here we explore disorder-robust topological arrays of Mie-resonant nanoparticles for polarisation control of photoluminescence of nanocrystals. We demonstrate polarized emission from rare-earth-doped nanocrystals governed by photonic topological edge states supported by zigzag arrays of dielectric resonators. We verify the topological origin of polarised photoluminescence by comparing emission from nanoparticles coupled to topologically trivial and nontrivial arrays of nanoresonators.

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