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A general treatment of geometric phases and dynamical invariants
- Source :
- Europhys. Lett. 82, 20007 (2008)
- Publication Year :
- 2007
-
Abstract
- Based only on the parallel transport condition, we present a general method to compute Abelian or non-Abelian geometric phases acquired by the basis states of pure or mixed density operators, which also holds for nonadiabatic and noncyclic evolution. Two interesting features of the non-Abelian geometric phase obtained by our method stand out: i) it is a generalization of Wilczek and Zee's non-Abelian holonomy, in that it describes nonadiabatic evolution where the basis states are parallelly transported between distinct degenerate subspaces, and ii) the non-Abelian character of our geometric phase relies on the transitional evolution of the basis states, even in the nondegenerate case. We apply our formalism to a two-level system evolving nonadiabatically under spontaneous decay to emphasize the non-Abelian nature of the geometric phase induced by the reservoir. We also show, through the generalized invariant theory, that our general approach encompasses previous results in the literature.
- Subjects :
- Quantum Physics
Subjects
Details
- Database :
- arXiv
- Journal :
- Europhys. Lett. 82, 20007 (2008)
- Publication Type :
- Report
- Accession number :
- edsarx.0706.2448
- Document Type :
- Working Paper
- Full Text :
- https://doi.org/10.1209/0295-5075/82/20007