A note on discrete light cone quantization
arXiv:hep-th/9711063 · doi:10.1016/S0370-2693(98)00105-1
Abstract
In this brief note we would like to discuss, in a simple model system, the conditions under which the discrete light cone quantization framework should be trusted as an approximation scheme, with regard, in particular, to the size and mass of the system. Specifically, we are going to discuss ``quark-antiquark'' bound states in 1+1 dim., for which a natural size is provided by analogy with a ``two points and a spring'' system, and show that the condition for obtaining a reliable estimate is the same as the one derived in a recent paper for black holes in matrix theory.
4 pages, LaTeX; two misprints and a reference corrected
Cited by in corpus (9)
- Brane Dynamics and Gauge Theory
- PP-wave string interactions from perturbative Yang-Mills theory
- Light-Front-Quantized QCD in Light-Cone Gauge: The Doubly Transverse Gauge Propagator
- Light-Front-Quantized QCD in Covariant Gauge
- On Central Charges and Hamiltonians for 0-brane dynamics
- Background geometry of DLCQ M theory on a p-torus and holography
- Thermodynamics of doubly charged CGHS model and D1-D5-KK black holes of IIB supergravity
- Light-cone quantization of two dimensional field theory in the path integral approach
- On Strongly Coupled Matrix Theory and Stochastic Quantization: A New Approach to Holographic Dualities