activity
20242026
collaborators

11 papers

quant-ph2026

The Trinity of Markovian Quantum Thermodynamics: Unifying the Axiomatic, Microscopic, and Operational Paradigms

Yutong Luo, Jakub Czartowski, Felix Hubmann +2

Thermodynamics imposes fundamental constraints on the evolution of quantum systems. These constraints and their dynamical consequences have been formulated within distinct paradigm…

quant-ph2026

Distinguishing quantum processes with bounded coherent memory

Magdalini Zonnios, Felix C. Binder

Distinguishing multi-time quantum processes is a fundamental task underlying the diagnosis, benchmarking, and learning of temporally correlated quantum dynamics. The standard bench…

quant-ph2026

Accelerating qubit reset through the Mpemba effect

Théo Lejeune, Miha Papič, John Goold +3

Passive qubit reset is a key primitive for quantum information processing, whereby qubits are initialized by allowing them to relax to their ground state through natural dissipatio…

quant-ph2026

Average Equilibration Time for Gaussian Unitary Ensemble Hamiltonians

Emanuel Schwarzhans, Alessandro Candeloro, Felix C. Binder +2

Understanding equilibration times in closed quantum systems is essential for characterising their approach to equilibrium. Chaotic many-body systems are paradigmatic in this contex…

cond-mat.stat-mech2026

Digitally Optimized Initializations for Fast Thermodynamic Computing

Mattia Moroder, Felix C. Binder, John Goold

Thermodynamic computing harnesses the relaxation dynamics of physical systems to perform matrix operations. A key limitation of such approaches is the often long thermalization tim…

quant-ph2026

Thermodynamic Constraints on the Emergence of Intersubjectivity in Quantum Systems

Alessandro Candeloro, Tiago Debarba, Felix C. Binder

Ideal quantum measurement requires divergent thermodynamic resources. This is a consequence of the third law of thermodynamics, which prohibits the preparation of the measurement p…