Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8190619 | Physics Letters B | 2012 | 4 Pages |
Abstract
We consider brane-world scenarios embedded into string theory. We find that the D-brane backreaction induces a large increase in the open stringʼs proper length. Consequently the stringy nature of elementary particles can be detected at distances much larger than the fundamental string scale. As an example, we compute the gravitational potential between two open strings ending on backreacting D3-branes in four-dimensional compactifications of type II string theory. We find that the Newtonian potential receives a correction that goes like 1/r but that is not proportional to the inertial masses of the open strings, implying a violation of the equivalence principle in the effective gravitational theory. This stringy correction is screened by thermal effects when the distance between the strings is greater than the inverse temperature. This suggests new experimental tests for many phenomenological models in type II string theory.
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Authors
Raphael Benichou, John Estes,