UFRGS-HEP Journal Club

America/Sao_Paulo
IF-UFRGS

IF-UFRGS

Gustavo Gil Da Silveira (Universidade do Estado do Rio de Janeiro (BR))
    • 15:30 16:30
      Érison Rocha 1h

      Quantum Mechanics of Gravitational Waves
      Maulik Parikh, Frank Wilczek, George Zahariade

      Hide abstract | Show figures | Show BibTeX | Show discussion | View PDF | 2010.08205v1

      For the purpose of analyzing observed phenomena, it has been convenient, and thus far sufficient, to regard gravity as subject to the deterministic principles of classical physics, with the gravitational field obeying Newton's law or Einstein's equations. Here we treat the gravitational field as a quantum field and determine the implications of such treatment for experimental observables. We find that falling bodies in gravity are subject to random fluctuations ("noise") whose characteristics depend on the quantum state of the gravitational field. We derive a stochastic equation for the separation of two falling particles. Detection of this fundamental noise, which may be measurable at gravitational wave detectors, would vindicate the quantization of gravity, and reveal important properties of its sources.
      Authors' comments: 5 pages + 3 pages of supplemental material, 2 figures