Optically Active Quantum Dots in Monolayer WSe$_2$
Ajit Srivastava, Meinrad Sidler, Adrien V. Allain, Dominik S. Lembke,, Andras Kis, Atac Imamoglu

TL;DR
This paper reports the discovery of quantum dots in monolayer WSe$_2$, demonstrating their potential for quantum information processing through their unique optical and magnetic properties.
Contribution
It provides the first observation of quantum dots in monolayer WSe$_2$ with detailed analysis of their optical and magnetic characteristics, highlighting their suitability for quantum technologies.
Findings
Photon antibunching confirms zero-dimensional quantum emitters.
Localized excitons inherit properties from the host TMD.
Large zero-field splitting indicates singlet ground states.
Abstract
Semiconductor quantum dots have emerged as promising candidates for implementation of quantum information processing since they allow for a quantum interface between stationary spin qubits and propagating single photons. In the meanwhile, transition metal dichalcogenide (TMD) monolayers have moved to the forefront of solid-state research due to their unique band structure featuring a large band gap with degenerate valleys and non-zero Berry curvature. Here we report the observation of quantum dots in monolayer tungsten-diselenide with an energy that is 20 to 100 meV lower than that of two dimensional excitons. Photon antibunching in second-order photon correlations unequivocally demonstrates the zero-dimensional anharmonic nature of these quantum emitters. The strong anisotropic magnetic response of the spatially localized emission peaks strongly indicates that radiative recombination…
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Taxonomy
Topics2D Materials and Applications · Graphene research and applications · Quantum Dots Synthesis And Properties
