58 research outputs found
Line Defects, Tropicalization, and Multi-Centered Quiver Quantum Mechanics
We study BPS line defects in N=2 supersymmetric four-dimensional field
theories. We focus on theories of "quiver type," those for which the BPS
particle spectrum can be computed using quiver quantum mechanics. For a wide
class of models, the renormalization group flow between defects defined in the
ultraviolet and in the infrared is bijective. Using this fact, we propose a way
to compute the BPS Hilbert space of a defect defined in the ultraviolet, using
only infrared data. In some cases our proposal reduces to studying
representations of a "framed" quiver, with one extra node representing the
defect. In general, though, it is different. As applications, we derive a
formula for the discontinuities in the defect renormalization group map under
variations of moduli, and show that the operator product algebra of line
defects contains distinguished subalgebras with universal multiplication rules.
We illustrate our results in several explicit examples.Comment: 76 pages, 10 figures; v2: minor revisions, correction to Coulomb
branch calculation for defects in SU(2) SY
Schur Indices, BPS Particles, and Argyres-Douglas Theories
We conjecture a precise relationship between the Schur limit of the
superconformal index of four-dimensional field theories, which
counts local operators, and the spectrum of BPS particles on the Coulomb
branch. We verify this conjecture for the special case of free field theories,
QED, and gauge theory coupled to fundamental matter.
Assuming the validity of our proposal, we compute the Schur index of all
Argyres-Douglas theories. Our answers match expectations from the connection of
Schur operators with two-dimensional chiral algebras. Based on our results we
propose that the chiral algebra of the generalized Argyres-Douglas theory
with and coprime, is the vacuum sector of the
minimal model, and that the Schur index is the associated
vacuum character.Comment: 46 pages, 12 figures. v2: revisions to section 1, references adde
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