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We define in the space of n by m matrices of rank n, n less or equal than m, the condition Riemannian structure as follows: For a given matrix A the tangent space of A is equipped with the Hermitian inner product obtained by multiplying the usual Frobenius inner product by the inverse of the square of the smallest singular value of A denoted sigma_n(A). When this smallest singular value has multiplicity 1, the function A -> log (sigma_n(A)^(-2)) is a convex function with respect to the condition Riemannian structure that is t -> log (sigma_n(A(t))^(-2)) is convex, in the usual sense for any geodesic A(t). In a more abstract setting, a function alpha defined on a Riemannian manifold (M,) is said to be self-convex when log alpha (gamma(t)) is convex for any geodesic in (M,). Necessary and sufficient conditions for self-convexity are given when alpha is C^2. When alpha(x) = d(x,N)^(-2) where d(x,N) is the distance from x to a C^2 submanifold N of R^j we prove that alpha is self-convex when restricted to the largest open set of points x where there is a unique closest point in N to x. We also show, using this more general notion, that the square of the condition number ||A|||_F / sigma_n(A) is self-convex in projective space and the solution variety.
This article was improved for readbility, following referee suggestions
Mathematics - Differential Geometry, 65F35, LINEAR GROUP, GEODESIC, 65F35;15A12;, Numerical Analysis (math.NA), 15A12, Geodesic, Linear group, Differential Geometry (math.DG), RIEMANNIAN GEOMETRY, Log-convexity, FOS: Mathematics, 65F35 (15A12, https://purl.org/becyt/ford/1.1, LOG-CONVEXITY, Mathematics - Numerical Analysis, Condition number, Riemannian geometry, CONDITION NUMBER, https://purl.org/becyt/ford/1
Mathematics - Differential Geometry, 65F35, LINEAR GROUP, GEODESIC, 65F35;15A12;, Numerical Analysis (math.NA), 15A12, Geodesic, Linear group, Differential Geometry (math.DG), RIEMANNIAN GEOMETRY, Log-convexity, FOS: Mathematics, 65F35 (15A12, https://purl.org/becyt/ford/1.1, LOG-CONVEXITY, Mathematics - Numerical Analysis, Condition number, Riemannian geometry, CONDITION NUMBER, https://purl.org/becyt/ford/1
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