T-duality of D-brane versus O-plane actions
arXiv:2210.03972 · doi:10.1007/JHEP01(2023)012
Abstract
It is known that, in the static gauge, the world-volume and the transverse Kaluza-Klein (KK) reductions of the O-plane effective actions on a circle satisfy the T-duality constraint for arbitrary base space background. In this paper we show that due to the presence of the second fundamental form in the D-brane couplings at order and higher, the T-duality is satisfied only for a subclass of couplings for arbitrary base space background. They are couplings where is the number of -field (without derivative on it). For couplings, the base space metric must be block-diagonal and the momentum vector field must be zero. However, the derivatives of the metric and the vector field are arbitrary. Using the assumption that the effective actions at the critical dimension are background independent, we then show that the T-duality constraint for the couplings at order and for , fixes completely both bulk and boundary actions. These couplings indicate that the propagators of the massless open string fields receive -correction. We have also imposed the T-duality constraint on couplings. Because of the above restriction on the base space background in these cases, however, the T-duality can only partially fix the couplings for . This study shows that the Dirac-Born-Infeld (DBI) factor appears in both bulk and boundary actions at order .
25 pages, Latex file, no figure; v2: some clarifications added, it appears in JHEP
References in corpus (8)
- Double Field Theory
- Heterotic Effective Action and Duality Symmetries Revisited
- Effective action of type II superstring theories at order : NS-NS couplings
- Four-derivative couplings via T-duality constraint
- Background independence of effective actions at critical dimension
- Higher-derivative field redefinitions in the presence of boundary
- Couplings of order six in the gauge field strength and the second fundamental form on a D-brane at order
- Surface terms in effective action of O-plane at order