Quantum Confinement Emissions in Strained Monolayer WSe <sub>2</sub> : A Nanoscale Approach to Single-Photon Emitters via Tip-Enhanced Techniques — Lucas Liberal (2026) | RDL Network
Quantum Confinement Emissions in Strained Monolayer WSe <sub>2</sub> : A Nanoscale Approach to Single-Photon Emitters via Tip-Enhanced Techniques
Article 2026 en
Authors
LL
Lucas Liberal
RN
Rafael Nadas
GS
Gustavo H. R. Soares
Abstract
1 min read
Two-dimensional (2D) semiconductors such as monolayer WSe<sub>2</sub> have attracted significant interest for their quantum properties and potential as scalable single-photon emitters. However, conventional microphotoluminescence (μ-PL) techniques are fundamentally limited by optical diffraction, hindering access to critical nanoscale features such as strain gradients and localized quantum confinement. In this study, we utilize tip-enhanced photoluminescence (NanoPL) with a spatial resolution of ≈10 nm to directly image the emission landscape of monolayer WSe<sub>2</sub> on top of nanopillars at room temperature. Our results reveal two distinct localization regimes associated with leading theoretical models for single-photon activation and provide guidelines for deterministic nanoengineering of quantum light sources.
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