1. Open superstring first mass level effective Lagrangian: Massive spin-2 in an electromagnetic background
- Author
-
Karim Benakli, Cassiano A. Daniel, Wenqi Ke, and HEP, INSPIRE
- Subjects
High Energy Physics - Theory ,Nuclear and High Energy Physics ,causality ,background ,superstring ,Regge poles ,effective Lagrangian ,FOS: Physical sciences ,field equations ,spin ,charged particle ,High Energy Physics - Phenomenology ,High Energy Physics - Phenomenology (hep-ph) ,electromagnetic ,High Energy Physics - Theory (hep-th) ,dimension ,electromagnetic field ,open ,[PHYS.HTHE] Physics [physics]/High Energy Physics - Theory [hep-th] ,coupling ,string model ,minimal - Abstract
Minimal coupling leads to problems such as loss of causality if one wants to describe charged particles of spin greater than one propagating in a constant electromagnetic background. Regge trajectories in string theory contain such states, so their study may allow us to investigate possible avenues to remedy the pathologies. We present here two explicit forms, related by field redefinitions, of the Lagrangian describing the bosonic states in the first massive level of open superstrings in four dimensions. The first one reduces, when the electromagnetic field is set to zero, to the Fierz-Pauli Lagrangian for the spin-2 mode. The second one is a more compact form which simplifies the derivation of a Fierz-Pauli system of equations of motion and constraints., Comment: 11 pages
- Published
- 2023
- Full Text
- View/download PDF