Minimal free resolutions of sheaves on the projective plane and the stable base locus decomposition of their moduli spaces

The purpose of this paper is to incorporate minimal free resolutions into the study of the birational geometry of the moduli space of coherent sheaves on the plane with character ξ, denoted by M(ξ). We show that it is possible to recover the relevant Bridgeland destabilizing object from the minimal free resolution in order to compute the effective cone Eff(M(ξ)) and conjecture a full relationship between Bridgeland destabilizing objects and minimal free resolutions. Moreover, we also prove that minimal free resolutions, paired with interpolation for vector bundles, yield the movable cone of the Hilbert scheme of n points on the plane P2[n], for certain values of n. We propose a program that computes the full stable base locus decomposition of P2[n] based on free resolutions and interpolation. We exhibit that this programs yields correct answers for small values of n.