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利用光探测磁共振光谱法对稀释磁性胶体纳米片电子-核耦合的有说服力的证据。

Persuasive Evidence for Electron-Nuclear Coupling in Diluted Magnetic Colloidal Nanoplatelets Using Optically Detected Magnetic Resonance Spectroscopy.

作者信息

Strassberg Rotem, Delikanli Savas, Barak Yahel, Dehnel Joanna, Kostadinov Alyssa, Maikov Georgy, Hernandez-Martinez Pedro Ludwig, Sharma Manoj, Demir Hilmi Volkan, Lifshitz Efrat

机构信息

Schulich Faculty of Chemistry, Solid State Institute, Russell Berrie Nanotechnology Institute , Technion-Israel Institute of Technology , Haifa 32000 , Israel.

Luminous Center of Excellence for Semiconductor Lighting and Displays, TPI, School of Electrical and Electronic Engineering, School of Physical and Mathematical Sciences, School of Materials Science and Engineering , Nanyang Technological University-NTU Singapore , 639798 Singapore.

出版信息

J Phys Chem Lett. 2019 Aug 1;10(15):4437-4447. doi: 10.1021/acs.jpclett.9b01999. Epub 2019 Jul 24.

Abstract

The incorporation of magnetic impurities into semiconductor nanocrystals with size confinement promotes enhanced spin exchange interaction between photogenerated carriers and the guest spins. This interaction stimulates new magneto-optical properties with significant advantages for emerging spin-based technologies. Here we observe and elaborate on carrier-guest interactions in magnetically doped colloidal nanoplatelets with the chemical formula CdSe/CdMnS, explored by optically detected magnetic resonance and magneto-photoluminescence spectroscopy. The host matrix, with a quasi-type II electronic configuration, introduces a dominant interaction between a photogenerated electron and a magnetic dopant. Furthermore, the data convincingly presents the interaction between an electron and nuclear spins of the doped ions located at neighboring surroundings, with consequent influence on the carrier's spin relaxation time. The nuclear spin contribution by the magnetic dopants in colloidal nanoplatelets is considered here for the first time.

摘要

将磁性杂质掺入具有尺寸限制的半导体纳米晶体中,可促进光生载流子与客体自旋之间增强的自旋交换相互作用。这种相互作用激发了新的磁光特性,对新兴的自旋基技术具有显著优势。在此,我们通过光探测磁共振和磁光致发光光谱,观察并阐述了化学式为CdSe/CdMnS的磁性掺杂胶体纳米片晶中的载流子 - 客体相互作用。具有准II型电子构型的主体基质引入了光生电子与磁性掺杂剂之间的主要相互作用。此外,数据令人信服地呈现了位于相邻环境中的掺杂离子的电子与核自旋之间的相互作用,从而对载流子的自旋弛豫时间产生影响。本文首次考虑了胶体纳米片晶中磁性掺杂剂的核自旋贡献。

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