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Browsing Tag

Optical materials and structures

6 posts
AArtificial intelligence
Machine learning climbs the Jacob’s Ladder of optoelectronic properties
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Machine learning climbs the Jacob’s Ladder of optoelectronic properties

  • August 31, 2025
We have calculated RPA spectra for all materials in the IPA database24 that have at most 8 atoms…
PPhysics
Strong-interaction-driven quadrupolar-to-dipolar exciton transitions in a trilayer moiré superlattice
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Strong-interaction-driven quadrupolar-to-dipolar exciton transitions in a trilayer moiré superlattice

  • August 22, 2025
Wang, G. et al. Colloquium: excitons in atomically thin transition metal dichalcogenides. Rev. Mod. Phys. 90, 021001 (2018).…
PPhysics
Spin-orbit coupling in van der Waals materials for optical vortex generation
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Spin-orbit coupling in van der Waals materials for optical vortex generation

  • August 18, 2025
Figure 1a schematically illustrates the creation of optical vortices via spin-orbit coupling in the hBN crystal. As shown…
PPhysics
Brightening self-trapped exciton emission in 2D metal-organic chalcogenolates via argentophilicity-mediated anisotropic compression
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Brightening self-trapped exciton emission in 2D metal-organic chalcogenolates via argentophilicity-mediated anisotropic compression

  • August 2, 2025
Pressure-tuned optical properties The strong excitonic effects dominate the optoelectronic properties of AgSePh at room temperature. To reveal…
PPhysics
Flatland wakes based on leaky hyperbolic polaritons
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Flatland wakes based on leaky hyperbolic polaritons

  • July 31, 2025
Zhang, Q. et al. Interface nano-optics with van der Waals polaritons. Nature 597, 187–195 (2021). CAS  PubMed  Google…
PPhysics
Enhancing interlayer exciton dynamics by coupling with monolithic cavities via the field-induced Stark effect
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Enhancing interlayer exciton dynamics by coupling with monolithic cavities via the field-induced Stark effect

  • July 17, 2025
Electrically tunable cavity-coupled IXs Several TMDC combinations provide type-II alignments with IXs3,6. In our work, we chose MoSe2/WSe2…
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