arXiv · 2301.03233
Quantum state reduction of general initial states through spontaneous unitarity violation
Abstract
The inability of Schrodinger's unitary time evolution to describe measurement of a quantum state remains a central foundational problem. It was recently suggested that the unitarity of Schrodinger dynamics can be spontaneously broken, resulting in measurement as an emergent phenomenon in the thermodynamic limit. Here, we introduce a family of models for spontaneous unitarity violation that apply to generic initial superpositions over arbitrarily many states, using either single or multiple state-independent stochastic components. Crucially, we show that Born's probability rule emerges spontaneously in all cases.
Explore related subjects
Keep this discovery
Aritro Mukherjee, Srinivas Gotur, Jelle Aalberts, Rosa van den Ende, Lotte Mertens, Jasper van Wezel. 2023-01-09. Quantum state reduction of general initial states through spontaneous unitarity violation. https://doi.org/10.3390/e26020131
Cite the original work for its findings. Save a collection to share your selection of sources.