Path Integral Approach to Fermionic Vacuum Energy in Non-parallel D1-Branes
A. Jahan

TL;DR
This paper calculates the fermionic vacuum energy in superstring theory for non-parallel D1-branes using the path integral method, providing insights into brane interactions.
Contribution
It introduces a path integral approach to compute fermionic vacuum energy in a novel brane configuration, extending previous methods.
Findings
Derived explicit expression for fermionic vacuum energy
Analyzed effects of brane angles on vacuum energy
Provided a framework for future studies of brane interactions
Abstract
The fermionic one loop vacuum energy of the superstring theory in a system of non-parallel D1-branes is derived by applying the path integral formalism.
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