Mishra Suryakant, Bowes Eric G, Majumder Somak, Hollingsworth Jennifer A, Htoon Han, Jones Andrew C
Center for Integrated Nanotechnologies, Materials Physics and Applications Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, United States.
ACS Nano. 2024 Mar 26;18(12):8663-8672. doi: 10.1021/acsnano.3c08676. Epub 2024 Mar 14.
One of the central aims of the field of spintronics is the control of individual electron spins to effectively manage the transmission of quantized data. One well-known mechanism for controlling electronic spin transport is the chiral-induced spin-selectivity (CISS) effect in which a helical nanostructure imparts a preferential spin orientation on the electronic transport. One potential application of the CISS effect is as a transduction pathway between electronic spin and circularly polarized light within nonreciprocal photonic devices. In this work, we identify and quantify the degree of chiral-induced spin-selective electronic transport in helical polyaniline films using magnetoconductive atomic force microscopy (mcAFM). We then induce circularly polarized quantum light emission from CdSe/CdS core/shell quantum dots placed on these films, demonstrating a degree of circular polarization of up to ∼21%. Utilizing time-resolved photoluminescence microscopy, we measure the radiative lifetime difference associated with left- and right-handed circular polarizations of single emitters. These lifetime differences, in combination with Kelvin probe mapping of the variation of surface potential with magnetization of the substrate, help establish an energy level diagram describing the spin-dependent transport pathways that enable the circularly polarized photoluminescence.
自旋电子学领域的核心目标之一是控制单个电子自旋,以有效管理量子化数据的传输。一种控制电子自旋输运的著名机制是手性诱导自旋选择性(CISS)效应,其中螺旋纳米结构在电子输运上赋予优先的自旋取向。CISS效应的一个潜在应用是作为非互易光子器件中电子自旋与圆偏振光之间的转导途径。在这项工作中,我们使用磁导原子力显微镜(mcAFM)识别并量化螺旋聚苯胺薄膜中手性诱导自旋选择性电子输运的程度。然后,我们从放置在这些薄膜上的CdSe/CdS核壳量子点诱导出圆偏振量子光发射,展示出高达约21%的圆偏振度。利用时间分辨光致发光显微镜,我们测量了与单个发射器左旋和右旋圆偏振相关的辐射寿命差异。这些寿命差异,结合表面电势随衬底磁化变化的开尔文探针映射,有助于建立一个能级图,描述实现圆偏振光致发光的自旋相关输运途径。