English

Point-like non-commutative families of bounding cochains

Symplectic Geometry 2025-11-27 v1 High Energy Physics - Theory Algebraic Geometry

Abstract

We define genus zero open Gromov-Witten invariants with boundary and interior constraints for a Lagrangian submanifold of arbitrary even dimension. The definition relies on constructing a canonical family of bounding cochains that satisfy the point-like condition of the second author and Tukachinsky. Since the Lagrangian is even dimensional, the parameter of the family is odd. Thus, to avoid the vanishing of invariants with more than one boundary constraint, the parameter must be non-commutative. The invariants are defined either when the Lagrangian is a rational cohomology sphere or when the Lagrangian is fixed by an anti-symplectic involution, has dimension 22 modulo 44, and its cohomology is that of a sphere aside from degree 11 modulo 44. In dimension 22, these invariants recover Welschinger's invariants. We develop an obstruction theory for the existence and uniqueness of bounding cochains in a Fukaya AA_\infty algebra with non-commutative coefficients. The obstruction classes belong to twisted cohomology groups of the Lagrangian instead of the de Rham cohomology of the commutative setting. A spectral sequence is constructed to compute the twisted cohomology groups. The extension of scalars of an AA_\infty algebra by a non-commutative ring is treated in detail. A theory of pseudo-completeness is introduced to guarantee the convergence of the Maurer-Cartan equation, which defines bounding cochains, even though the non-commutative parameter is given zero filtration.

Keywords

Cite

@article{arxiv.2511.21682,
  title  = {Point-like non-commutative families of bounding cochains},
  author = {Elad Kosloff and Jake P. Solomon},
  journal= {arXiv preprint arXiv:2511.21682},
  year   = {2025}
}

Comments

79 pages, includes summary of results and notation needed from arXiv:1608.02495 and arXiv:1608.01304