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From the 1 of 12 linked papers with an AI index.

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12 papers

cond-mat.stat-mech2026

Temporal Interference from Topological Transitions in Monitored Quantum Dynamics

Qingyuan Wang, Ruoyu Yin, Eli Barkai

The paper studies how stroboscopic measurements of a quantum system reveal temporal interference patterns that arise when a topological winding number changes, creating dark states…

cond-mat.stat-mech2026

Fractionally Quantized Recurrence Detection Times in Monitored Quantum Many-Body Systems

Quancheng Liu, Sabine Tornow, David A. Kessler +1

Recurrence time quantifies the duration required for a physical system to return to its initial state, playing a pivotal role in understanding the predictability of complex systems…

cond-mat.stat-mech2026

Resonances, Recurrence Times and Steady States in Monitored Noisy Qubit Systems

Shuanger Ma, Sabine Tornow, Eli Barkai

We study non-equilibrium steady states and recurrence times in noisy, stroboscopically monitored qubit systems using complete measurements. In the noiseless limit, recurrence times…

cond-mat.stat-mech2026

Sokoban Random Walk: A Trapping Perspective

Prashant Singh, Eli Barkai, David A Kessler

We study caging/trapping in Sokoban-type models, featuring a random walker moving through a disordered medium of obstacles and capable of pushing some obstacles blocking its path.…

cond-mat.stat-mech2026

Sokoban Random Walk: From Environment Reshaping to Trapping Crossover

Prashant Singh, David A. Kessler, Eli Barkai

We study the dynamics of a Sokoban random walker moving in a disordered medium with obstacle density . In contrast to the classic model of de Gennes with static obstacles that…

cond-mat.stat-mech2026

Transition in Splitting Probabilities of Quantum Walks

Prashant Singh, David A. Kessler, Eli Barkai

We investigate the splitting probability of a monitored continuous-time quantum walk with two targets and show that, in stark contrast to a classical random walk, it exhibits a non…