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5 papers

quant-ph2026

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…

quant-ph2026

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…

quant-ph2026

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…

quant-ph2026

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…

quant-ph2025

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…