光子学
光致发光
偶极子
光发射
各向异性
激光阈值
材料科学
激子
各向同性
单层
凝聚态物理
跃迁偶极矩
光电子学
纳米技术
光学
物理
量子力学
波长
作者
Riccardo Scott,Jan Heckmann,Anatol Prudnikau,Artsiom Antanovich,А. И. Михайлов,Nina Owschimikow,Mikhail Artemyev,Juan I. Climente,U. Woggon,Nicolai B. Grosse,Alexander W. Achtstein
标识
DOI:10.1038/nnano.2017.177
摘要
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.
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