Characterizing Optimal-speed unitary time evolution of pure and quasi-pure quantum states
Quantum Physics
2024-08-16 v1 Mathematical Physics
Differential Geometry
math.MP
Abstract
We present a characterization of the Hamiltonians that generate optimal-speed unitary time evolution and the associated dynamical trajectory, where the initial states are either pure states or quasi-pure quantum states. We construct the manifold of pure states as an orbit under the conjugation action of the Lie group on the manifold of one-dimensional orthogonal projectors, obtaining an isometry with the flag manifold . From this construction, we show that Hamiltonians generating optimal-speed time evolution are fully characterized by equigeodesic vectors of . We later extend that result to quasi-pure quantum states.
Keywords
Cite
@article{arxiv.2408.07794,
title = {Characterizing Optimal-speed unitary time evolution of pure and quasi-pure quantum states},
author = {John A. Mora Rodríguez and Brian Grajales and Marcelo Terra Cunha and Lino Grama},
journal= {arXiv preprint arXiv:2408.07794},
year = {2024}
}
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14 pages