TY - JOUR
T1 - The cohomology of the general stable sheaf on a K3 surface
AU - Coskun, Izzet
AU - Nuer, Howard
AU - Yoshioka, Kōta
N1 - Publisher Copyright:
© 2023 Elsevier Inc.
PY - 2023/8/1
Y1 - 2023/8/1
N2 - Let X be a K3 surface with Picard group Pic(X)≅ZH such that H2=2n. Let MH(v) be the moduli space of Gieseker semistable sheaves on X with Mukai vector v. We say that v satisfies weak Brill-Noether if the general sheaf in MH(v) has at most one nonzero cohomology group. We show that given any rank r≥2, there are only finitely many Mukai vectors of rank r on K3 surfaces of Picard rank one where weak Brill-Noether fails. We give an algorithm for finding the potential counterexamples and classify all such counterexamples up to rank 20 explicitly. Moreover, in each of these cases we calculate the cohomology of the general sheaf. Given r, we give sharp bounds on n, d, and a that guarantee that v satisfies weak Brill-Noether. As a corollary, we obtain another proof of the classification of Ulrich bundles on K3 surfaces of Picard rank one. In addition, we discuss the question of when the general sheaf in MH(v) is globally generated. Our techniques make crucial use of Bridgeland stability conditions.
AB - Let X be a K3 surface with Picard group Pic(X)≅ZH such that H2=2n. Let MH(v) be the moduli space of Gieseker semistable sheaves on X with Mukai vector v. We say that v satisfies weak Brill-Noether if the general sheaf in MH(v) has at most one nonzero cohomology group. We show that given any rank r≥2, there are only finitely many Mukai vectors of rank r on K3 surfaces of Picard rank one where weak Brill-Noether fails. We give an algorithm for finding the potential counterexamples and classify all such counterexamples up to rank 20 explicitly. Moreover, in each of these cases we calculate the cohomology of the general sheaf. Given r, we give sharp bounds on n, d, and a that guarantee that v satisfies weak Brill-Noether. As a corollary, we obtain another proof of the classification of Ulrich bundles on K3 surfaces of Picard rank one. In addition, we discuss the question of when the general sheaf in MH(v) is globally generated. Our techniques make crucial use of Bridgeland stability conditions.
KW - Bridgeland stability
KW - Brill-Noether theory
KW - K3 surfaces
KW - Moduli spaces
UR - http://www.scopus.com/inward/record.url?scp=85159902182&partnerID=8YFLogxK
U2 - 10.1016/j.aim.2023.109102
DO - 10.1016/j.aim.2023.109102
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AN - SCOPUS:85159902182
SN - 0001-8708
VL - 426
JO - Advances in Mathematics
JF - Advances in Mathematics
M1 - 109102
ER -