Higher-derivative terms in one-loop effective action for general trajectories of D-particles in Matrix theory
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Publication:1572171
DOI10.1016/S0550-3213(99)00266-7zbMath0958.81120arXivhep-th/9903025MaRDI QIDQ1572171
Publication date: 12 July 2000
Published in: Nuclear Physics. B (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/hep-th/9903025
Related Items (5)
Gauge/gravity duality for interactions of spherical membranes in 11-dimensional pp-wave ⋮ Two-graviton interaction in pp-wave background in Matrix theory and supergravity ⋮ On the supersymmetry and gauge structure of Matrix theory ⋮ M(atrix) theory: matrix quantum mechanics as a fundamental theory ⋮ Power of supersymmetry in D-particle dynamics
Cites Work
- D0 branes on \(T^n\) and matrix theory
- A two-loop test of M(atrix) theory
- Constraints from extended supersymmetry in quantum mechanics.
- Space-time uncertainty principle and conformal symmetry in D-particle dynamics.
- String theory dynamics in various dimensions
- Multi-body interactions of D-particles in supergravity and Matrix theory
- Equations of motion and Galilei invariance in D-particle dynamics
- Supergravity currents and linearized interactions for Matrix theory configurations with fermionic backgrounds
- Linearized supergravity from Matrix theory.
- Bound states of strings and \(p\)-branes
- D-branes and short distances in string theory
- Dirichlet Branes and Ramond-Ramond Charges
- Why Is the Matrix Model Correct?
- Conformal symmetry in Matrix model beyond the eikonal approximation.
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