collaborators

8 papers

quant-ph2026

Quantum Synchronization

Parvinder Solanki, Albert Cabot, Fernando Iemini +8

Natural and engineered classical systems are replete with examples of synchronization, understood as the adjustment of rhythms of physical systems. Such synchronization is at the h…

quant-ph2026

The Boundary Time Crystal as a light source for collectively enhanced sensing

Malik Jirasek, Igor Lesanovsky, Albert Cabot

Modern precision measurements, such as interferometry for detecting gravitational waves, rely on the estimation of optical phases encoded in light fields. Here, we propose to explo…

quant-ph2026

Time series learning in a many-body Rydberg system with emergent collective amplification

Zongkai Liu, Qiming Ren, Chris Nill +12

Interacting Rydberg atoms constitute a versatile platform for the realization of non-equilibrium states of matter. Close to phase transitions, they respond collectively to external…

quant-ph2026

Intermittency and metastable dark states as a resource for continuous sensing

Robert Mattes, Igor Lesanovsky, Albert Cabot

Quanta emitted by an open quantum system carry information about intrinsic parameters, enabling their estimation via continuous monitoring. In practice, however, only a fraction of…

quant-ph2026

Parameter estimation with one- and two-time measurements on the emission field of the boundary time crystal

Albert Cabot, Federico Carollo, Igor Lesanovsky

Many-body quantum systems can exhibit collective effects that enhance the sensitivity of parameter estimation protocols. An example is provided by resonantly driven two-level atoms…

quant-ph2026

Designing open quantum systems for enabling quantum enhanced sensing through classical measurements

Robert Mattes, Albert Cabot, Federico Carollo +1

Quantum systems in nonequilibrium conditions, where coherent many-body interactions compete with dissipative effects, can feature rich phase diagrams and emergent critical behavior…