The Observation of hyperradiance accompanied by enhanced entanglement in a hybrid optomechanical system
Zeshan Haider, Muhammad Altaf, Tahira Nasreen, Muhammad Imran, Rameez Ul Islam, Manzoor Ikram

TL;DR
This paper theoretically explores a hybrid optomechanical system demonstrating enhanced photon-phonon entanglement and hyperradiance, surpassing traditional superradiant limits, with potential realization in circuit QED setups.
Contribution
It introduces a novel theoretical framework showing simultaneous enhancement of bipartite entanglement and hyperradiance in a three-body resonant optomechanical system.
Findings
Enhanced bipartite photon-phonon entanglement for two qubits
Observation of hyperradiance exceeding Dicke superradiance
Photon and phonon antibunching confirmed by $g^{(2)}(0)$
Abstract
We have theoretically investigated an optomechanical system and presented the scenario of significantly enhanced bipartite photon-phonon entanglement for two qubits coupled to the single mode of the cavity. And results are compared with the one qubit case for reference. The tripartite atoms-photon-phonon interaction is considered as only three-body resonant interaction while the two-body actions are ignored under some potential approximations. Furthermore, we have studied the phenomenon of hyperradiance in which the well-known Dicke superradiant ( scaling law) can be surpassed due to the inter-atomic correlations. Jointly, a parameter regime is explored to observe the entanglement of photon-phonon pairs and their hyperradiance simultaneously. As it is important to show that the generation of photons and phonons are antibunched, the equal time second-order correlation function…
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