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arxiv: 1606.05537 · v1 · pith:VYNMLPTTnew · submitted 2016-06-17 · 🪐 quant-ph · math-ph· math.AG· math.MP

Three-qutrit entanglement and simple singularities

classification 🪐 quant-ph math-phmath.AGmath.MP
keywords varphientanglementmathbbthree-qutrithypersufacemathcalpurerangle
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In this paper, we use singularity theory to study the entanglement nature of pure three-qutrit systems. We first consider the algebraic variety $X$ of separable three-qutrit states within the projective Hilbert space $\mathbb{P}(\mathcal{H}) = \mathbb{P}^{26}$. Given a quantum pure state $|\varphi\rangle\in \mathbb{P}(\mathcal{H})$ we define the $X_\varphi$-hypersuface by cutting $X$ with a hyperplane $H_\varphi$ defined by the linear form $\langle\varphi|$ (the $X_\varphi$-hypersurface of $X$ is $X\cap H_\varphi \subset X$). We prove that when $|\varphi\rangle$ ranges over the SLOCC entanglement classes, the "worst" possible singular $X_\varphi$-hypersuface with isolated singularities, has a unique singular point of type $D_4$.

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