Target Space Space
arXiv:1509.06229 · doi:10.1016/j.shpsb.2015.08.007
Abstract
This paper investigates the significance of T-duality in string theory: the indistinguishability with respect to all observables, of models attributing radically different radii to space -- larger than the observable universe, or far smaller than the Planck length, say. Two interpretational branch points are identified and discussed. First, whether duals are physically equivalent or not: by considering a duality of the familiar simple harmonic oscillator, I argue that they are. Unlike the oscillator, there are no measurements 'outside' string theory that could distinguish the duals. Second, whether duals agree or disagree on the radius of 'target space', the space in which strings evolve according to string theory. I argue for the latter position, because the alternative leaves it unknown what the radius is. Since duals are physically equivalent yet disagree on the radius of target space, it follows that the radius is indeterminate between them. Using an analysis of Brandenberger and Vafa (1989), I explain why -- even so -- space is observed to have a determinate, large radius. The conclusion is that observed, 'phenomenal' space is not target space, since a space cannot have both a determinate and indeterminate radius: instead phenomenal space must be a higher-level phenomenon, not fundamental.
16 pages, 1 figure; based on a presentation at the The Philosophical Foundations of Dualities in Physics conference, University of Florence, September 2014. To appear in a special issue of Studies in History and Philosophy of Modern Physics
References in corpus (2)
Cited by in corpus (10)
- Conceptual Aspects of Gauge/Gravity Duality
- Dualities and Emergent Gravity: Gauge/Gravity Duality
- String Theory, Loop Quantum Gravity and Eternalism
- On Empirical Equivalence and Duality
- The Heuristic Function of Duality
- Conceptual Analysis of Black Hole Entropy in String Theory
- Laws beyond spacetime
- Emergence and Correspondence for String Theory Black Holes
- The Empirical Under-determination Argument Against Scientific Realism for Dual Theories
- The multiple realizability of general relativity in quantum gravity