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单个CsPbBr钙钛矿量子点在无外部磁场情况下的圆偏振发光

Circularly Polarized Luminescence Without External Magnetic Fields from Individual CsPbBr Perovskite Quantum Dots.

作者信息

Oddi Virginia, Zhu Chenglian, Becker Michael A, Sahin Yesim, Dirin Dmitry N, Kim Taehee, Mahrt Rainer F, Even Jacky, Rainò Gabriele, Kovalenko Maksym V, Stöferle Thilo

机构信息

IBM Research Europe─Zurich, Säumerstrasse 4, 8803 Rüschlikon, Switzerland.

Institute of Inorganic Chemistry, Department of Chemistry and Applied Biosciences, ETH Zurich, 8093 Zurich, Switzerland.

出版信息

ACS Nano. 2024 Jul 2;18(26):17218-17227. doi: 10.1021/acsnano.4c04392. Epub 2024 Jun 21.

Abstract

Lead halide perovskite quantum dots (QDs), the latest generation of the colloidal QD family, exhibit outstanding optical properties, which are now exploited as both classical and quantum light sources. Most of their rather exceptional properties are related to the peculiar exciton fine-structure of band-edge states, which can support unique bright triplet excitons. The degeneracy of the bright triplet excitons is lifted with energetic splitting in the order of millielectronvolts, which can be resolved by the photoluminescence (PL) measurements of single QDs at cryogenic temperatures. Each bright exciton fine-structure-state (FSS) exhibits a dominantly linear polarization, in line with several theoretical models based on the sole crystal field, exchange interaction, and shape anisotropy. Here, we show that in addition to a high degree of linear polarization, the individual exciton FSS can exhibit a non-negligible degree of circular polarization even without external magnetic fields by investigating the four Stokes parameters of the exciton fine-structure in individual CsPbBr QDs through Stokes polarimetric measurements. We observe a degree of circular polarization up to ∼38%, which could not be detected by using the conventional polarimetric technique. In addition, we found a consistent transition from left- to right-hand circular polarization within the fine-structure triplet manifold, which was observed in magnetic-field-dependent experiments. Our optical investigation provides deeper insights into the nature of the exciton fine structures and thereby drives the yet-incomplete understanding of the unique photophysical properties of this class of QDs for the benefit of future applications in chiral quantum optics.

摘要

卤化铅钙钛矿量子点(QDs)是胶体量子点家族的最新一代,具有出色的光学特性,目前被用作经典光源和量子光源。它们的大多数非凡特性都与带边态独特的激子精细结构有关,这种结构能够支持独特的明亮三重态激子。明亮三重态激子的简并性通过毫电子伏特量级的能量分裂被消除,这可以通过在低温下对单个量子点的光致发光(PL)测量来分辨。每个明亮激子精细结构态(FSS)都表现出主要为线性极化,这与基于单一晶体场、交换相互作用和形状各向异性的几个理论模型一致。在这里,我们通过斯托克斯偏振测量研究单个CsPbBr量子点中激子精细结构的四个斯托克斯参数,结果表明,除了高度的线性极化外,即使没有外部磁场,单个激子FSS也能表现出不可忽略的圆极化程度。我们观察到高达约38%的圆极化程度,这是使用传统偏振技术无法检测到的。此外我们发现,在精细结构三重态流形内存在从左旋到右旋圆极化的一致转变,这在磁场相关实验中也有观察到。我们的光学研究为激子精细结构的本质提供了更深入的见解,从而推动了对这类量子点独特光物理性质尚未完全理解的研究,以造福于手性量子光学的未来应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47e5/11223489/e207d8221808/nn4c04392_0001.jpg

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