説明:
(abstract)Hyperspectral photoluminescence maps of moiré transition-metal dichalcogenide heterobilayers encode rich information about the underlying disorder, but extracting it is hampered by the ambiguity of assigning individual spectral peaks. We show that the spatial correlations among a set of simple, peak-decomposition-free spectral descriptors—such as the centroid energy, the dominant-peak energy, and a sharp-line fraction—provide a peak-decomposition-free route to infer features of that disorder. Different descriptors act as filters that select different components of a multiscale disorder landscape—a smooth, micron-correlated background and a dense set of localized traps—and therefore acquire different spatial correlation lengths. The central prediction is a correlation-length hierarchy, 𝜉(𝐸cent)≥𝜉(𝐸dom), which we derive by splitting the dominant-peak energy into a smooth background part and a short-range trap-switching fluctuation. The same picture explains the measured interdescriptor correlations, including the near-perfect anticorrelation 𝜌S(Δ𝐸cd,𝑅HL)≈−0.978, which we show to be a robust geometric trend for spectra dominated by a common emission-envelope asymmetry. Benchmarked against phenomenological simulations, Hamiltonian diagonalization, and the measured MoSe2/WSe2 descriptor correlations, the framework turns descriptor maps into a quantitative, peak-decomposition-free probe of slow disorder and local traps in moiré excitons and, more broadly, in disordered semiconductor emitters.
権利情報:
キーワード: Moiré excitons, Hyperspectral photoluminescence, Spectral descriptors, Transition-metal dichalcogenide heterobilayers, Exciton traps, Correlation analysis
刊行年月日: 2026-08-07
出版者: American Physical Society (APS)
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研究助成金:
原稿種別: 著者最終稿 (Accepted manuscript)
MDR DOI: https://doi.org/10.48505/nims.6460
公開URL: https://doi.org/10.1103/jt25-c8fp
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更新時刻: 2026-08-18 08:41:10 +0900
MDRでの公開時刻: 2026-08-18 10:28:52 +0900