Fractional-Wrapped Branes with Rotation, Linear Motion and Background Fields
arXiv:1707.08383 · doi:10.1016/j.nuclphysb.2017.07.009
Abstract
We obtain two boundary states corresponding to the two folds of a fractional-wrapped D-brane, i.e. the twisted version under the orbifold and the untwisted version. The brane has rotation and linear motion, in the presence of the following background fields: the Kalb-Ramond tensor, a internal gauge potential and a tachyon field. The rotation and linear motion are inside the volume of the brane. The brane lives in the -dimensional spacetime, with the orbifold-toroidal structure in the twisted sector. Using these boundary states we calculate the interaction amplitude of two parallel fractional D-branes with the foregoing setup. Various properties of this amplitude such as the long-range behavior will be analyzed.
19 pages, Latex2e, no figure
References in corpus (1)
Cited by in corpus (5)
- Scattering of the Kalb-Ramond State from a Dynamical D-brane with Background Fields
- Left-Right Entanglement Entropy for a Dp-brane with Dynamics and Background Fields
- LREE of a Dynamical Unstable D-brane
- Brane with Transverse Rotation and Background Fields: Boundary State and Tachyon Condensation
- Effective Action of a Dynamical D-brane with Background Fluxes