English

Time and Matter in the Interaction between Gravity and Quantum Fluids: Are there Macroscopic Quantum Transducers between Gravitational and Electromagnetic waves?

General Relativity and Quantum Cosmology 2007-05-23 v3

Abstract

Measurements of the tunneling time are briefly reviewed. Next, time and matter in general relativity and quantum mechanics is examined. In particular, the question arises: How does gravitational radiation interact with a coherent quantum many-body system (a ``quantum fluid'')? A minimal coupling rule for the coupling of the electron spin to curved spacetime in general relativity implies the possibility of a coupling between electromagnetic (EM) and gravitational (GR) radiation mediated by a quantum Hall fluid. This suggests that quantum transducers between these two kinds of radiation fields might exist. We report here on a first attempt at a Hertz-type experiment, in which a high-Tc\rm{T_c} superconductor (YBCO) was the material used as a quantum transducer to convert EM into GR microwaves, and a second piece of YBCO in a separate apparatus was used to back-convert GR into EM microwaves. An upper limit on the conversion efficiency of YBCO was measured to be 1.6×1051.6\times10^{-5}.

Keywords

Cite

@article{arxiv.gr-qc/0303089,
  title  = {Time and Matter in the Interaction between Gravity and Quantum Fluids: Are there Macroscopic Quantum Transducers between Gravitational and Electromagnetic waves?},
  author = {Raymond Y. Chiao and Walter J. Fitelson},
  journal= {arXiv preprint arXiv:gr-qc/0303089},
  year   = {2007}
}

Comments

16 pages, 4 figures, in proceedings of the "Time and Matter" conference in Venice of 2002, to be published by World Scientific