activity
20242026
collaborators

8 papers

quant-ph2026

Distinguishing synthetic unravelings on quantum computers

Eloy Piñol, Piotr Sierant, Dustin Keys +6

Distinct monitoring or intervention schemes can produce different conditioned stochastic quantum trajectories while sharing the same unconditional (ensemble-averaged) dynamics. Thi…

physics.data-an2025

Objective comparison of methods to decode anomalous diffusion

Gorka Muñoz-Gil, Giovanni Volpe, Miguel Angel Garcia-March +31

Deviations from Brownian motion leading to anomalous diffusion are found in transport dynamics from quantum physics to life sciences. The characterization of anomalous diffusion fr…

cond-mat.soft2025

Quantitative evaluation of methods to analyze motion changes in single-particle experiments

Gorka Muñoz-Gil, Harshith Bachimanchi, Jesús Pineda +33

The analysis of live-cell single-molecule imaging experiments can reveal valuable information about the heterogeneity of transport processes and interactions between cell component…

cond-mat.dis-nn2025

Anderson localization induced by structural disorder

Sourav Bhattacharjee, Piotr Sierant, Marek Dudyński +3

We examine the onset of Anderson localization in three-dimensional systems with structural disorder in the form of lattice irregularities and in the absence of any on-site disorder…

cond-mat.dis-nn2025

Phenomenology of many-body localization in bond-disordered spin chains

Adith Sai Aramthottil, Piotr Sierant, Maciej Lewenstein +1

Many-body localization (MBL) hinders the thermalization of quantum many-body systems in the presence of strong disorder. In this work, we study the MBL regime in bond-disordered sp…

cond-mat.dis-nn2025

Many-Body Localization in the Age of Classical Computing

Piotr Sierant, Maciej Lewenstein, Antonello Scardicchio +2

Statistical mechanics provides a framework for describing the physics of large, complex many-body systems using only a few macroscopic parameters to determine the state of the syst…