Gao Yuan, Ta Van Duong, Zhao Xin, Wang Yue, Chen Rui, Mutlugun Evren, Fong Kah Ee, Tan Swee Tiam, Dang Cuong, Sun Xiao Wei, Sun Handong, Demir Hilmi Volkan
Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, 637371, Singapore.
Nanoscale. 2015 Apr 21;7(15):6481-6. doi: 10.1039/c4nr07395a.
In recent years, colloidal semiconductor nanorods have attracted great interest for polarized spontaneous emission. However, their polarized gain has not been possible to achieve so far. In this work we show the highly polarized stimulated emission from the densely packed ensembles of core-seeded nanorods in a cylindrical cavity. Here CdSe/CdS dot-in-rods were coated and aligned on the inner wall of a capillary tube, providing optical feedback for the nanorod gain medium. Results show that the polarized gain originates intrinsically from the aligned nanorods and not from the cavity and that the optical anisotropy of the nanorod ensemble was amplified with the capillary tube, resulting in highly polarized whispering gallery mode lasing. The highly polarized emission and lasing, together with easy fabrication and flexible incorporation, make this microlaser a promising candidate for important color conversion and enrichment applications including liquid crystal display backlighting and laser lighting.
近年来,胶体半导体纳米棒因其极化自发发射而备受关注。然而,到目前为止,它们的极化增益尚未实现。在这项工作中,我们展示了圆柱腔中紧密堆积的核壳纳米棒集合体产生的高度极化受激发射。在这里,CdSe/CdS 棒中 dots 被涂覆并排列在毛细管的内壁上,为纳米棒增益介质提供光学反馈。结果表明,极化增益本质上源于排列的纳米棒,而非来自腔体,并且纳米棒集合体的光学各向异性通过毛细管得到增强,从而产生高度极化的回音壁模式激光。这种高度极化的发射和激光,再加上易于制造和灵活集成,使得这种微激光器成为包括液晶显示器背光源和激光照明在内的重要颜色转换和富集应用的有前途的候选者。