Towards Quantizing Null p-branes: Light-Cone Gauge Analysis and Physical Hilbert Space
Abstract
We study null -branes, -branes with a Carrollian -dimensional worldvolume embedded in a generic -dimensional flat Minkowski target space. This theory has a generalized BMS gauge symmetry. By fixing the light-cone gauge, the BMS symmetry is partly fixed, leaving ``momentum constraints'' alongside -dimensional area-preserving diffeomorphisms. We quantize the theory in the light-cone gauge via canonical quantization and construct the physical Hilbert space by imposing the remaining constraints using sandwich conditions: the constraints must vanish when sandwiched between any two physical states. We show that solutions to the sandwich conditions are classified into distinct classes, which we completely specify. In addition, we discuss special and interesting case of membranes in four dimensions and examine the physical implications of the quantized null -brane and its associated physical Hilbert space.
Cite
@article{arxiv.2412.12436,
title = {Towards Quantizing Null p-branes: Light-Cone Gauge Analysis and Physical Hilbert Space},
author = {S. Dutta and I. M. Rasulian and M. M. Sheikh-Jabbari and H. Yavartanoo},
journal= {arXiv preprint arXiv:2412.12436},
year = {2025}
}
Comments
40 pages, 1 figure