String Theory - Nomological Unification and the Epicycles of the Quantum Field Theory Paradigm
arXiv:1101.0690
Abstract
String Theory is the result of the conjunction of three conceptually independent elements: (i) the metaphysical idea of a nomological unity of the forces, (ii) the model-theoretical paradigm of Quantum Field Theory, and (iii) the conflict resulting from classical gravity in a quantum world. String Theory is sometimes assumed to solve this conflict: by means of an application of the model-theoretical apparatus of (perturbative) Quantum Field Theory. But, String Theory does not really solve the conflict. Rather it exemplifies the inadequacy of this model-theoretical apparatus in the context of Quantum Gravity: After several decades of development it still exists only in an essentially perturbative formulation (with minor non-perturbative extensions and vague ideas with regard to a possible non-perturbative formulation). And, due to its quantum field theoretical heritage, it is conceptually incompatible with central implications of General Relativity, especially those resulting from the general relativistic relation between gravity and spacetime. All known formulations of String Theory are background-dependent. On the other hand, it was not even possible to reproduce the Standard Model. Instead, String Theory led to a multitude of internal problems - and to the plethora of low-energy scenarios with different nomologies and symmetries, known as the String Landscape. All attempts to find a dynamically motivated selection principle remained without success, leaving String Theory without any predictive power. The nomological unification of the fundamental forces is only achieved in a purely formal way within the model-theoretical paradigm of Quantum Field Theory - by means of physically unmotivated epicycles like higher dimensionality, Calabi-Yau spaces, branes, etc.
23 pages
References in corpus (15)
- Quantum Graphity: a model of emergent locality
- Loop Quantum Gravity: An Inside View
- The causal set approach to quantum gravity
- Hydrodynamics of spacetime and vacuum viscosity
- Spin Foam Models of Quantum Spacetime
- Emergent physics: Fermi point scenario
- Emergent General Relativity
- Quantum causal histories in the light of quantum information
- Particle Identifications from Symmetries of Braided Ribbon Network Invariants
- Dynamics of Causal Sets
- The Internal and External Problems of String Theory - A Philosophical View
- New directions in Background Independent Quantum Gravity
- Computability at the Planck scale
- Background Independent Quantum Field Theory and the Cosmological Constant Problem
- Bibliography of Publications related to Classical Self-dual variables and Loop Quantum Gravity