6 papers
Dissipative Phase Transition in the Two-Photon Dicke Model
Aanal Jayesh Shah, Peter Kirton, Simone Felicetti +1
We explore the dissipative phase transition of the two-photon Dicke model, a topic that has garnered significant attention recently. Our analysis reveals that while single-photon l…
Single-Photon Generation: Materials, Techniques, and the Rydberg Exciton Frontier
Arya Keni, Kinjol Barua, Khabat Heshami +2
Due to their quantum nature, single-photon emitters generate individual photons in bursts or streams. They are paramount in emerging quantum technologies such as quantum key distri…
Bottom-up Fabrication of 2D Rydberg Exciton Arrays in Cuprous Oxide
Kinjol Barua, Samuel Peana, Arya Deepak Keni +5
Solid-state platforms provide exceptional opportunities for advancing on-chip quantum technologies by enhancing interaction strengths through coupling, scalability, and robustness.…
Manipulating the Dipolar Interactions and Cooperative Effects in Confined Geometries
Hadiseh Alaeian, Artur Skljarow, Stefan Scheel +2
To facilitate the transition of quantum effects from the controlled laboratory environment to practical real-world applications, there is a pressing need for scalable platforms. On…
Purcell-enhanced dipolar interactions in nanostructures
Artur Skljarow, Harald Kübler, Charles S. Adams +3
Strong light-induced interactions between atoms are known to cause nonlinearities at a few-photon level which are crucial for applications in quantum information processing. Compar…
Controlling electric, magnetic, and chiral dipolar emission with PT-symmetric potentials
Hadiseh Alaeian, Jennifer A. Dionne
We investigate the effect of parity-time (PT)-symmetric optical potentials on the radiation of achiral and chiral emitters. Mode coalescence and the appearance of exceptional point…