7 papers · 1 filter
Bohr's complementarity
Diego S. Starke, Jonas Maziero, Marcos L. W. Basso +1
Quantum complementarity is a fundamental feature of quantum systems and has captivated the physics research community for nearly a century, with significant advancements emerging i…
A variational quantum algorithm for entanglement quantification
Lucas Friedrich, Marcos L. W. Basso, Alberto B. P. Junior +4
Quantum entanglement is a foundational resource in quantum information science, underpinning applications across physics. However, detecting and quantifying entanglement remains a…
Work distribution of quantum fields in static curved spacetimes
Rafael L. S. Costa, Marcos L. W. Basso, Jonas Maziero +1
We investigate the formulation of work distributions for quantum scalar fields in static curved spacetimes by extending the Ramsey interferometric protocol originally developed in…
Hartman Effect from a Geometrodynamic Extension of Bohmian Mechanics
Said Lantigua, Jonas Maziero
This paper develops a geometrodynamic extension of Bohmian mechanics to describe quantum tunneling through a potential barrier, treating particle trajectories as geodesics in an Al…
Relativistic approach to thermodynamic irreversibility
M. Basso, J. Maziero, L. C. Céleri
We consider a localized quantum system living in a curved spacetimes. By translating into this scenario the paradgmatic two-point measument scheme in quantum statistical mechanics…
An Updated Quantum Complementarity Principle
Diego S. Starke, Marcos L. W. Basso, Jonas Maziero
Bohr's complementarity principle has long been a fundamental concept in quantum mechanics, positing that, within a given experimental setup, a quantum system (or quanton) can exhib…