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Local tuning of Coupling Constants allows for Quantum Fields in Curved Spacetime in the Lab

MPS-Authors

Prémont-Schwarz,  Isabeau
Microscopic Quantum Structure & Dynamics of Spacetime, AEI-Golm, MPI for Gravitational Physics, Max Planck Society;

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Fulltext (public)

1112.4918
(Preprint), 331KB

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Citation

Prémont-Schwarz, I. (in preparation). Local tuning of Coupling Constants allows for Quantum Fields in Curved Spacetime in the Lab.


Cite as: http://hdl.handle.net/11858/00-001M-0000-000E-EE3D-3
Abstract
In this paper we will investigate how one can create emergent curved spacetimes by locally tuning the coupling constants of condensed matter systems. In the continuum limit we thus obtain continuous effective quantum fields living on curved spacetimes. In particular, using Stingnet condensates we can obtain effective electromagnetism. We will show for example how we obtain quantum electromagnetism (U(1)-Yang-Mills) in a black hole (Schwarzschild) spacetime.