From the 1 of 5 linked papers with an AI index.
5 papers
Dissipative phase transitions and chaos in two-photon driven quantum optomechanics
Giovanni Bragadin, Filippo Ferrari, Lorenzo Fioroni +4
The paper studies a two‑photon‑driven optomechanical system, showing it can exhibit both first‑ and second‑order dissipative phase transitions, symmetry breaking, and chaotic dynam…
Floquet Dissipative Phase Transitions
Alberto Mercurio, Vincenzo Macrì, Filippo Ferrari +2
Dissipative phase transitions (DPTs) are traditionally characterized through the spectrum of a time-independent Liouvillian superoperator. However, this definition does not apply t…
High-order interactions in quantum optomechanics: fluctuations, dynamics and thermodynamics
Alessandro Ferreri, Vincenzo Macrì, Yoshihiko Hasegawa +1
Quantum optomechanics describes the interaction between a confined field and a fluctuating wall due to radiation pressure. The dynamics of this system is typically understood using…
An asymptotic field approach for the control of dipole emission in integrated structures
Vincenzo Macrì, Alice Viola, Marco Liscidini
We present a general framework to model spontaneous emission in integrated photonic structures by exploiting quantization of the electromagnetic field in terms of asymptotic in/out…
Preserving quantum coherence in thermal noisy systems via qubit frequency modulation
Mahshid Khazaei Shadfar, Farzam Nosrati, Ali Mortezapour +3
Quantum coherence is a key resource underpinning quantum technologies, yet it is highly susceptible to environmental decoherence, especially in thermal settings. While frequency mo…