An Elementary Characterization of Bargmann Invariants
An Elementary Characterization of Bargmann Invariants
Bargmann invariants, also known as multivariate traces of quantum states $\operatorname{Tr}(Ï_1 Ï_2 \cdots Ï_n)$, are unitary invariant quantities used to characterize weak values, Kirkwood-Dirac quasiprobabilities, out-of-time-order correlators (OTOCs), and geometric phases. Here we give a complete characterization of the set $B_n$ of complex values that $n$-th order invariants can take, resolving some recently proposed conjectures. We show that $B_n$ is equal to the range of invariants arising from pure states described by Gram matrices of circulant form. We show that both ranges are equal to the $n$-th power of the complex unit $n$-gon, and are therefore convex, which provides a simple geometric intuition. Finally, we show that any Bargmann invariant of order $n$ is realizable using either qubit states, or circulant qutrit states.
Sagar Silva Pratapsi、João Gouveia、Leonardo Novo、Ernesto F. Galvão
物理学
Sagar Silva Pratapsi,João Gouveia,Leonardo Novo,Ernesto F. Galvão.An Elementary Characterization of Bargmann Invariants[EB/OL].(2025-07-04)[2025-07-16].https://arxiv.org/abs/2506.17132.点此复制
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