Black Hole Meiosis
arXiv:0909.0508 · doi:10.1007/JHEP04(2010)047
Abstract
The enumeration of BPS bound states in string theory needs refinement. Studying partition functions of particles made from D-branes wrapped on algebraic Calabi-Yau 3-folds, and classifying states using split attractor flow trees, we extend the method for computing a refined BPS index, arXiv:0810.4301. For certain D-particles, a finite number of microstates, namely polar states, exclusively realized as bound states, determine an entire partition function (elliptic genus). This underlines their crucial importance: one might call them the `chromosomes' of a D-particle or a black hole. As polar states also can be affected by our refinement, previous predictions on elliptic genera are modified. This can be metaphorically interpreted as `crossing-over in the meiosis of a D-particle'. Our results improve on hep-th/0702012, provide non-trivial evidence for a strong split attractor flow tree conjecture, and thus suggest that we indeed exhaust the BPS spectrum. In the D-brane description of a bound state, the necessity for refinement results from the fact that tachyonic strings split up constituent states into `generic' and `special' states. These are enumerated separately by topological invariants, which turn out to be partitions of Donaldson-Thomas invariants. As modular predictions provide a check on many of our results, we have compelling evidence that our computations are correct.
46 pages, 8 figures. v2: minor changes. v3: minor changes and reference added
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Cited by in corpus (11)
- The Weak Gravity Conjecture in three dimensions
- Non-supersymmetric extremal multicenter black holes with superpotentials
- Wall-crossing of D4-D2-D0 and flop of the conifold
- Statistical model and BPS D4-D2-D0 counting
- Multiple D4-D2-D0 on the Conifold and Wall-crossing with the Flop
- BPS Dendroscopy on Local
- Supersymmetric black holes and deformation
- Evidence for Duality of Conifold from Fundamental String
- Modular anomaly of BPS black holes
- Elliptic genera from multi-centers
- Exact indices for D-particles, flow trees and the derived category