Directed Exciton Magnetic Polaron Formation in a Single Colloidal Mn<sup>2+</sup>:CdSe/CdS Quantum Dot.

Lorenz, Severin; Erickson, Christian S; Riesner, Maurizio; Gamelin, Daniel R; Fainblat, Rachel; Bacher, Gerd · Nano Lett · 2020

basic_science · Level V

Where this comes from

Abstract

One of the most prominent signatures of transition-metal doping in colloidal nanocrystals is the formation of charge carrier-induced magnetization of the dopant spin sublattice, called exciton magnetic polaron (EMP). Understanding the direction of EMP formation, however, is still a major obstacle. Here, we present a series of temperature-dependent photoluminescence studies on single colloidal Mn<sup>2+</sup>:CdSe/CdS core/shell quantum dots (QDs) performed in a vector magnetic field providing a unique insight into the interaction between individual excitons and numerous magnetic impurities. The energy of the QD emission and its full width at half-maximum are controlled by the interplay of EMP formation and statistical magnetic fluctuations, in excellent agreement with theory. Most important, we give the first direct demonstration that anisotropy effects-hypothesized for more than a decade-dominate the direction of EMP formation. Our findings reveal a pathway for directing the orientation of optically induced magnetization in colloidal nanocrystals.