From the 1 of 7 linked papers with an AI index.
7 papers
Lattice quantum electrodynamics of a molecular emitter in a topological gap
Clarisse Fournier, Johannes Düreth, Elena Fanella +12
Engineering the photonic environment using lattices of coupled resonators, which we refer to as lattice quantum electrodynamics (QED), provides a route to control both the spontane…
Constructing mode-resolved quantum optical models for emitters in photonic crystals
Antonio Morales-Pérez, Iñaki GarcÃa-Elcano, Chiara Devescovi +3
The paper presents a method to build quantum‑optical lattice models that incorporate the detailed, position‑ and polarization‑dependent light‑matter couplings of emitters embedded…
Optical lattice quantum simulator of dynamics beyond Born-Oppenheimer
Javier Argüello-Luengo, Alejandro González-Tudela, J. Ignacio Cirac
Here, we propose a platform based on ultra-cold fermionic molecules trapped in optical lattices to simulate nonadiabatic effects, as they appear in certain molecular dynamical prob…
Photon-mediated interactions and dynamics of coherently driven quantum emitters in complex photonic environments
Alberto Miguel-Torcal, Alejandro González-Tudela, F. J. GarcÃa-Vidal +1
In recent years, Born-Markov master equations based on tracing out the electromagnetic degrees of freedom have been extensively employed in the description of quantum optical pheno…
Engineering giant transmon molecules as mediators of conditional two-photon gates
Tomás Levy-Yeyati, Tomás Ramos, Alejandro González-Tudela
Artificial atoms non-locally coupled to waveguides -- the so-called giant atoms -- offer new opportunities for the control of light and matter. In this work, we show how to use an…
Photon-mediated interactions by Floquet photonic lattices
Jia-Qiang Chen, Peng-Bo Li, Ãlvaro Gómez-León +1
We investigate the interactions between two-level emitters mediated by time-dependent, one-dimensional, structured photonic baths, focusing on Floquet topological lattices. Buildin…