Rydberg excitons and polaritons in monolayer transition metal dichalcogenides in a magnetic field
Description
<p>This dataset was developed as part of the projects: <p><ul><li>Engineering quantum photon states in two-dimensional materials (2DEnLight). Summary:The 'quantum age' of the 21st century has the potential to revolutionize science, industry, and everyday life. However, its full impact, far beyond today's digital landscape, is still unfolding. Among the most exciting fields is quantum light and light-matter interactions, particularly non-classical light sources emitting photons with controllable quantum correlations. These are key for quantum communication and information processing. The 2DEnLight project focuses on generating light at the single-photon limit and manipulating its intrinsic properties. Our proposal aims to engineer coupled emitter-light systems to produce non-classical photon streams and demonstrate tunable quantum correlations at both the few- and many-body levels.</li><li>Quantum Relativistic Laboratory (QRAB):QRAB brings together topics of quantum optics and many-body physics—which it fits in a subproject labelled QUANTUM—together with wavepacket propagation in two-dimensional (2D) materials, with a focus on changes of reference frames made experimentally available thanks to Surface Acoustic Waves (SAW)—which it fits in the subproject labelled RELATIVITY. The theoretical exploitation of these themes, both on their own and in their combination, is to be brought to experimental implementations in a third subproject labelled LABORATORY.</li></ul><p>The dataset is structured in folders named "Figure_i" with 2,...,13. They correspond to the figures in the PRB paper "Rydberg excitons and polaritons in monolayer transition metal dichalcogenides in a magnetic field". Each folder contains the data in format .txt for the corresponding figure in the paper, along with the Python code to generate it.</p>
Citations (0)
No citations found
Mentions (0)
No mentions found
Metrics Over Time
Publication Details
Subfield
Atomic and Molecular Physics, and Optics
Field
Physics and Astronomy
Domain
Physical Sciences
Confidence Score
57%
Source
Scholar Data Model