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The $\mu$-permanent revisited
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abstract
Let $A=(a_{ij})$ be an $n$-by-$n$ matrix. For any real number $\mu$, we define the polynomial $$P_\mu(A)=\sum_{\sigma\in S_n} a_{1\sigma(1)}\cdots a_{n\sigma(n)}\,\mu^{\ell(\sigma)}\; ,$$ as the $\mu$-permanent of $A$, where $\ell(\sigma)$ is the number of inversions of the permutation $\sigma$ in the symmetric group $S_n$. In this note, we review several less known results of the $\mu$-permanent, recalling some of its interesting properties. Some determinantal conjectures are considered and extended to that polynomial. A correction to a previous note is presented as well.
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Cited by 1 Pith paper
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Quantum Supremacy through Fock State $q$ boson Sampling with Transmon Qubits
A transmon's nonlinear spectrum can be approximated by a q-boson with q=1+K/omega, and the paper argues this enables Fock-state q-boson sampling with potential quantum supremacy.
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