The Neveu-Schwarz and Ramond Algebras of Logarithmic Superconformal Field Theory
arXiv:hep-th/0207273 · doi:10.1088/1126-6708/2003/01/041
Abstract
We describe the general features of the Neveu-Schwarz and Ramond sectors of logarithmic conformal field theories with N=1 supersymmetry. Three particular systems are examined in some detail -- D-brane recoil, a superconformal extension of the c=-2 model, and the supersymmetric SU(2)_2 WZW model.
65 pages AMSTeX; Typos corrected, references added and updated
References in corpus (5)
Cited by in corpus (23)
- A supersymmetric D-brane Model of Space-Time Foam
- Decoherence induced CPT violation and entangled neutral mesons
- The N=1 triplet vertex operator superalgebras
- Liouville Decoherence in a Model of Flavour Oscillations in the presence of Dark Energy
- Quantum-Gravity Induced Lorentz Violation and Dynamical Mass Generation
- Flavour Condensates in Brane Models and Dark Energy
- Brany Liouville Inflation
- Decoherence and CPT Violation in a Stringy Model of Space-Time Foam
- Logarithmic Superconformal Minimal Models
- Non-extensive statistics in stringy space-time foam models and entangled meson states
- Ghost Systems Revisited: Modified Virasoro Generators and Logarithmic Conformal Field Theories
- Fusion rules for the logarithmic superconformal minimal models II: including the Ramond sector
- Fusion rules for the logarithmic superconformal minimal models I: the Neveu-Schwarz sector
- Logarithmic Primary Fields in Conformal and Superconformal Field Theory
- Logarithmic Conformal Field Theories and Strings in Changing Backgrounds
- Extended chiral algebras and the emergence of SU(2) quantum numbers in the Coulomb gas
- The O(n) Model in the Limit (self-avoiding-walks) and Logarithmic Conformal Field Theory
- Far from equilibrium Chiral Magnetic Effect in Strong Magnetic Fields from Holography
- Recoiling D-branes
- The exact description of NS5-branes in the Penrose limit
- A Novel Foamy Origin for Singlet Fermion Masses
- Correlation Functions in N=3 Superconformal Theory
- Quantum Geometry of Finite XY Chains: A Comparison of Neveu-Schwarz and Ramond Sectors