English

Towards Communication in a Curved Spacetime Geometry

General Relativity and Quantum Cosmology 2021-08-20 v2 High Energy Physics - Theory Optics Quantum Physics

Abstract

The current race in quantum communication -- endeavouring to establish a global quantum network -- must account for special and general relativistic effects. The well-studied general relativistic effects include Shapiro time-delay, gravitational lensing, and frame dragging which all are due to how a mass distribution alters geodesics. Here, we report how the curvature of spacetime geometry affects the propagation of information carriers along an arbitrary geodesic. An explicit expression for the distortion onto the carrier wavefunction in terms of the Riemann curvature is obtained. Furthermore, we investigate this distortion for anti-de Sitter and Schwarzschild geometries. For instance, the spacetime curvature causes a 0.10~radian phase-shift for communication between Earth and the International Space Station on a monochromatic laser beam and quadrupole astigmatism can cause a 12.2 % cross-talk between structured modes traversing through the solar system. Our finding shows that this gravitational distortion is significant, and it needs to be either pre- or post-corrected at the sender or receiver to retrieve the information.

Keywords

Cite

@article{arxiv.2009.04217,
  title  = {Towards Communication in a Curved Spacetime Geometry},
  author = {Qasem Exirifard and Eric Culf and Ebrahim Karimi},
  journal= {arXiv preprint arXiv:2009.04217},
  year   = {2021}
}

Comments

Main article and the Supplementary information matching the published version

R2 v1 2026-06-23T18:24:47.158Z