D1-Strings in Large RR 3-Form Flux, Quantum Nambu Geometry and M5-Branes in C-Field
Chong-Sun Chu, Gurdeep S. Sehmbi

TL;DR
This paper explores D1-branes in RR flux backgrounds, revealing a quantum Nambu 3-bracket geometry, and proposes a novel action for multiple M5-branes incorporating quantum Nambu geometry and self-dual parameters.
Contribution
It introduces a quantum Nambu geometry as a classical solution in matrix models and proposes a new action for multiple M5-branes in a C-field background.
Findings
Quantum Nambu 3-bracket geometry is constructed.
Matrix models for string and M-theory backgrounds are developed.
A proposed action for multiple M5-branes includes quantum Nambu geometry and self-dual parameters.
Abstract
We consider D1-branes in a RR flux background and show that there is a low energy - large flux double scaling limit where the D1-branes action is dominated by a Chern-Simons-Myers coupling term. As a classical solution to the matrix model, we find a novel quantized geometry characterized by a quantum Nambu 3-bracket. Infinite dimensional representations of the quantum Nambu geometry are constructed which demonstrate that the quantum Nambu geometry is intrinsically different from the ordinary Lie algebra type noncommutative geometry. Matrix models for the IIB string, IIA string and M-theory in the corresponding backgrounds are constructed. A classical solution of a quantum Nambu geometry in the IIA Matrix string theory gives rise to an expansion of the fundamental strings into a system of multiple D4-branes and the fluctuation is found to describe an action for a non-abelian 3-form field…
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