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quant-ph2026

Glassy dynamics with softened kinetic constraints on a noisy quantum computer

Marcel Cech, Igor Lesanovsky, Federico Carollo

Mid-circuit measurements provide direct access to trajectory-level observables, revealing dynamical structures in many-body systems that are invisible in ensemble-averaged quantiti…

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

Revealing emergent many-body phenomena by analyzing large-scale space-time records of monitored quantum systems

Marcel Cech, Cecilia De Fazio, María Cea +3

Recent advances in quantum simulators permit unitary evolution interspersed with locally resolved mid-circuit measurements. This paves the way for the observation of large-scale sp…

quant-ph2026

Nonequilibrium phases and quantum correlations in synthetic transport models

Uddhav Sen, Federico Carollo, Sascha Wald

Quantum devices featuring mid-circuit measurement and reset capabilities, such as quantum computers and dual-species Rydberg quantum simulators, enable the realization of quantum c…

quant-ph2026

Large deviations and conditioned monitored quantum systems: a tensor network approach

María Cea, Marcel Cech, Federico Carollo +2

Coexistence of different dynamical phases is a hallmark of glassy dynamics. This is well-studied in classical systems where the underlying theoretical framework is that of large de…

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…