Towards Communication in a Curved Spacetime Geometry
arXiv:2009.04217 · doi:10.1038/s42005-021-00671-8
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.
Main article and the Supplementary information matching the published version
References in corpus (9)
- The Confrontation between General Relativity and Experiment
- Free-Space distribution of entanglement and single photons over 144 km
- Gravity Probe B: Final Results of a Space Experiment to Test General Relativity
- Semiclassical Dynamics of Electron Wave Packet States with Phase Vortices
- Gravitational Decoherence
- Quantum estimation of the Schwarzschild space-time parameters of the Earth
- Quantum Connectivity of Space-Time and Gravitationally Induced Decorrelation of Entanglement
- Fermi Coordinates and Penrose Limits
- The influence of the Earth's curved spacetime on Gaussian quantum coherence
Cited by in corpus (17)
- Roadmap on structured waves
- Tunning the tilt of a Dirac cone by atomic manipulations: application to 8Pmmn borophene
- Spacetime effects on wavepackets of coherent light
- Light propagation and atom interferometry in gravity and dilaton fields
- Relativistic quantum communication between harmonic oscillator detectors
- Gravitational distortion on photon state at the vicinity of the Earth
- Gravitational redshift induces quantum interference
- Quantum coherence of photons at cosmological distances
- Introduction to gravitational redshift of quantum photons propagating in curved spacetime
- Gravitational wave memory and its effects on particles and fields
- How gravitational fluctuations degrade the high-dimensional spatial entanglement
- Astrophysically sourced quantum coherent photonic signals
- Quantum interferometry in external gravitational fields
- Observer dependence of photon bunching: The influence of the relativistic redshift on Hong-Ou-Mandel interference
- Trajectory of a massive localised wave function in a curved spacetime geometry
- Viability of quantum communication across interstellar distances
- How gravitational waves change photon orbital angular momentum quantum states