Jacobian schemes arising from hypersurface arrangements in $\mathbb P^n$ (2312.01192v2)
Abstract: Freeness is an important property of a hypersurface arrangement, although its presence is not well understood. A hypersurface arrangement in $\PPn$ is free if $S/J$ is Cohen-Macaulay (CM), where $S = K[x_0,\ldots,x_n]$ and $J$ is the Jacobian ideal. We study three related unmixed ideals: $J{top}$, the intersection of height two primary components, $\sqrt{J{top}}$, the radical of $J{top}$, and when the $f_i$ are smooth we also study $\sqrt{J}$. Under mild hypotheses, we show that these ideals are CM. This establishes a full generalization of an earlier result with Schenck from hyperplane arrangements to hypersurface arrangements. If the hypotheses fail for an arrangement in projective $3$-space, the Hartshorne-Rao module measures the failure of CMness. We establish consequences for the even liaison classes of $J{top}$ and $\sqrt{J}$.