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Electrical networks and Lagrangian Grassmannians

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abstract

Cactus networks were introduced by Lam as a generalization of planar electrical networks. He defined a map from these networks to the Grassmannian Gr($n+1,2n$) and showed that the image of this map, $\mathcal X_n$ lies inside the totally nonnegative part of this Grassmannian. In this paper, we show that $\mathcal X_n$ is exactly the elements of Gr($n+1,2n$) that are both totally nonnegative and isotropic for a particular skew-symmetric bilinear form. For certain classes of cactus networks, we also explicitly describe how to turn response matrices and effective resistance matrices into points of Gr($n+1,2n$) given by Lam's map. Finally, we discuss how our work relates to earlier studies of total positivity for Lagrangian Grassmannians.

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math.CO 1

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2024 1

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representative citing papers

Electrical networks and data analysis in phylogenetics

math.CO · 2024-12-29 · conditional · novelty 7.0

A Kalmanson metric is an electrical resistance metric if and only if an explicitly constructed matrix lies in the totally nonnegative Isotropic Grassmannian with a nonvanishing Plücker coordinate.

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  • Electrical networks and data analysis in phylogenetics math.CO · 2024-12-29 · conditional · none · ref 7 · internal anchor

    A Kalmanson metric is an electrical resistance metric if and only if an explicitly constructed matrix lies in the totally nonnegative Isotropic Grassmannian with a nonvanishing Plücker coordinate.