arXiv · 0709.4329
Detecting unambiguously non-Abelian geometric phases with trapped ions
Abstract
We propose for the first time an experimentally feasible scheme to disclose the noncommutative effects induced by a light-induced non-Abelian gauge structure with trapped ions. Under an appropriate configuration, a true non-Abelian gauge potential naturally arises in connection with the geometric phase associated with two degenerated dark states in a four-state atomic system interacting with three pulsed laser fields. We show that the population in atomic state at the end of a composed path formed by two closed loops $C_1$ and $C_2$ in the parameter space can be significantly different from the composed counter-ordered path. This population difference is directly induced by the noncommutative feature of non-Abelian geometric phases and can be detected unambiguously with current technology.
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Xin-Ding Zhang, Z. D. Wang, Liang-Bin Hu, Zhi-Ming Zhang, Shi-Liang Zhu. 2007-09-27. Detecting unambiguously non-Abelian geometric phases with trapped ions. https://doi.org/10.1088/1367-2630%2F10%2F4%2F043031
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