Supersymmetric Quantum Mechanics from Light Cone Quantization
arXiv:hep-th/9908202 · doi:10.1142/9789812793850_0012
Abstract
We study the supersymmetric quantum mechanical systems that arise from discrete light cone quantization of theories with minimal supersymmetry in various dimensions. These systems, which have previously arisen in the study of black hole moduli spaces, are distinguished by having fewer fermionic fields than the familiar Kähler and hyper-Kähler models.
14 pages, LaTeX (sprocl.sty), to appear in the Yuri Golfand memorial volume. References added
Cited by in corpus (21)
- Asymptotic Dynamics and Asymptotic Symmetries of Three-Dimensional Extended AdS Supergravity
- N=4 Supersymmetric Mechanics in Harmonic Superspace
- On the Classification of N-extended Supersymmetric Quantum Mechanical Systems
- ABC of N=8, d=1 supermultiplets
- Gauging N=4 Supersymmetric Mechanics
- N = 4 mechanics of general (4, 4, 0) multiplets
- "Root" Action for N=4 Supersymmetric Mechanics Theories
- Gauging N=4 supersymmetric mechanics II: (1,4,3) models from the (4,4,0) ones
- The Light-Front Schrödinger Equation and Determination of the Perturbative QCD Scale from Color Confinement
- N=4, d=1 tensor multiplet and hyper-Kahler sigma-models
- The Common Origin of Linear and Nonlinear Chiral Multiplets in N=4 Mechanics
- Supersymmetric Mechanics in Superspace
- N=4 Supersymmetry and the BPST Instanton
- N=4 supersymmetric Eguchi-Hanson sigma model in d=1
- Superfield Formulation of Nonlinear N=4 Supermultiplets
- Nonlinear (4, 8, 4) Multiplet of N=8, d=1 Supersymmetry
- N=4 Supersymmetric Landau Models
- Superconformal Quantum Mechanics from M2-branes
- QCD on the Light-Front -- A Systematic Approach to Hadron Physics
- Supersymmetric sigma models, gauge theories and vortices
- N=4, d=1 Supersymmetric Hyper-Kaehler Sigma Models with Isospin Variables