Scott Riccardo, Heckmann Jan, Prudnikau Anatol V, Antanovich Artsiom, Mikhailov Aleksandr, Owschimikow Nina, Artemyev Mikhail, Climente Juan I, Woggon Ulrike, Grosse Nicolai B, Achtstein Alexander W
Institute of Optics and Atomic Physics, Technical University of Berlin, Strasse des 17. Juni 135, Berlin 10623, Germany.
Research Institute for Physical Chemical Problems of Belarusian State University, Minsk 220006, Belarus.
Nat Nanotechnol. 2017 Dec;12(12):1155-1160. doi: 10.1038/nnano.2017.177. Epub 2017 Sep 18.
Intrinsically directional light emitters are potentially important for applications in photonics including lasing and energy-efficient display technology. Here, we propose a new route to overcome intrinsic efficiency limitations in light-emitting devices by studying a CdSe nanoplatelets monolayer that exhibits strongly anisotropic, directed photoluminescence. Analysis of the two-dimensional k-space distribution reveals the underlying internal transition dipole distribution. The observed directed emission is related to the anisotropy of the electronic Bloch states governing the exciton transition dipole moment and forming a bright plane. The strongly directed emission perpendicular to the platelet is further enhanced by the optical local density of states and local fields. In contrast to the emission directionality, the off-resonant absorption into the energetically higher 2D-continuum of states is isotropic. These contrasting optical properties make the oriented CdSe nanoplatelets, or superstructures of parallel-oriented platelets, an interesting and potentially useful class of semiconductor-based emitters.
本征定向发光体在包括激光和节能显示技术在内的光子学应用中可能具有重要意义。在此,我们通过研究一种表现出强烈各向异性、定向光致发光的CdSe纳米片单层,提出了一种克服发光器件本征效率限制的新途径。对二维k空间分布的分析揭示了潜在的内部跃迁偶极分布。观察到的定向发射与控制激子跃迁偶极矩并形成一个明亮平面的电子布洛赫态的各向异性有关。垂直于纳米片的强定向发射通过光学局域态密度和局域场进一步增强。与发射方向性相反,进入能量较高的二维连续态的非共振吸收是各向同性的。这些截然不同的光学性质使得取向的CdSe纳米片或平行取向纳米片的超结构成为一类有趣且可能有用的基于半导体的发光体。