$N=1$ fermionic D3-branes in RNS formulation I. $C^\infty$-Algebrogeometric foundations of $d=4$, $N=1$ supersymmetry, SUSY-rep compatible hybrid connections, and $\widehat{D}$-chiral maps from a $d=4$ $N=1$ Azumaya/matrix superspace
Chien-Hao Liu, Shing-Tung Yau

TL;DR
This paper develops the mathematical foundations for describing fermionic D3-branes in string theory using supersymmetry, algebraic geometry, and hybrid connections, providing a rigorous framework for future dynamical models.
Contribution
It introduces $C^$-algebrogeometric structures, SUSY-rep compatible hybrid connections, and $\u00a0hat{D}$-chiral maps for $d=4$, $N=1$ supersymmetry, advancing the mathematical modeling of fermionic D3-branes.
Findings
Established $C^$-algebrogeometric foundations for superspace
Defined SUSY-rep compatible hybrid connections on superspace bundles
Constructed models for $hat{D}$-chiral maps and tested supersymmetric action functionals
Abstract
As the necessary background to construct from the aspect of Grothendieck's Algebraic Geometry dynamical fermionic D3-branes along the line of Ramond-Neveu-Schwarz superstrings in string theory, three pieces of the building blocks are given in the current notes: (1) basic -algebrogeometric foundations of , supersymmetry and , superspace in physics, with emphasis on the partial -ring structure on the function ring of the superspace, (2) the notion of SUSY-rep compatible hybrid connections on bundles over the superspace to address connections on the Chan-Paton bundle on the world-volume of a fermionic D3-brane, (3) the notion of -chiral maps from a Azumaya/matrix superspace with a fundamental module with a SUSY-rep compatible hybrid connection to a complex manifold as a model for a…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Algebraic structures and combinatorial models · Nonlinear Waves and Solitons
