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Theory of exciton-electron scattering in atomically thin semiconductors
Christian Fey, Peter Schmelcher, Atac Imamoglu +1
The realization of mixtures of excitons and charge carriers in van-der-Waals materials presents a new frontier for the study of the many-body physics of strongly interacting Bose-F…
Moiré superlattice in a MoSe/hBN/MoSe heterostructure: from coherent coupling of inter- and intra-layer excitons to correlated Mott-like states of electrons
Yuya Shimazaki, Ido Schwartz, Kenji Watanabe +3
Two dimensional materials and their heterostructures constitute a promising platform to study correlated electronic states as well as many body physics of excitons. Here, we presen…
Second-order photon correlation measurement with picosecond resolution
Aymeric Delteil, Chun Tat Ngai, Thomas Fink +1
The second-order correlation function of light constitutes a pivotal tool to quantify the quantum behavior of an emitter and in turn its potential for quantum informat…
Nonlinear optics in the fractional quantum Hall regime
Patrick Knüppel, Sylvain Ravets, Martin Kroner +3
Engineering strong interactions between optical photons is a great challenge for quantum science. Envisioned applications range from the realization of photonic gates for quantum i…
Interacting Polaron-Polaritons
Li Bing Tan, Ovidiu Cotlet, Andrea Bergschneider +5
Two dimensional semiconductors provide an ideal platform for exploration of linear exciton and polariton physics, primarily due to large exciton binding energy and strong light-mat…