Limits to the validity of gravitational redshift as a quantum-optical multimode mixer
arXiv:2502.20521 · doi:10.1007/s10773-026-06297-2
Abstract
We analyze the domain of validity of a quantum optical model that describes the effects of gravitational redshift on the quantum state of photons that propagate in curved spacetime. This model assumes that the modes defining the initial state of the photon are mixed with an auxiliary environment mode via an effective multimode mixer. We find that the model, as proposed, is consistent only to first order for small redshift, where the range of validity is conditional not only to the gravitational parameters, but also to those that define the photonic modes. We identify the problem and provide a partial solution in terms of a necessary condition on the transformation matrix representing the process, which requires the use of a number of auxiliary modes that is at least equal to the number of modes that define the photonic state. We conclude by discussing implications for theoretical quantum optics and photonics in curved spacetime, as well as for the development of quantum technologies.
26 pages, 4 figures. Comments welcome
References in corpus (49)
- The Quantum Internet
- The Confrontation between General Relativity and Experiment
- Satellite-to-ground quantum key distribution
- Analogue Gravity
- A Spin Entanglement Witness for Quantum Gravity
- Continuous variable quantum information: Gaussian states and beyond
- Quantum teleportation using active feed-forward between two Canary Islands
- Progress in satellite quantum key distribution
- Resolving the gravitational redshift within a millimeter atomic sample
- Towards a global quantum network
- The basics of gravitational wave theory
- The Unruh effect in quantum information beyond the single-mode approximation
- Advances in Space Quantum Communications
- Large scale quantum key distribution: challenges and solutions
- Distributed Quantum Computing: a Survey
- A gravitational redshift test using eccentric Galileo satellites
- Photon wave functions, wave-packet quantization of light, and coherence theory
- Locality & Entanglement in Table-Top Testing of the Quantum Nature of Linearized Gravity
- Satellite Quantum Communications: Fundamental Bounds and Practical Security
- Microsatellite-based real-time quantum key distribution
- Space-borne quantum memories for global quantum communication
- Spacetime effects on satellite-based quantum communications
- Highly Efficient Source for Indistinguishable Photons of Controlled Shape
- Visualizing Spacetime Curvature via Frame-Drag Vortexes and Tidal Tendexes I. General Theory and Weak-Gravity Applications
- Simplified derivation of the Hawking-Unruh temperature for an accelerated observer in vacuum
- Quantum estimation of the Schwarzschild space-time parameters of the Earth
- Sub-Megahertz Single Photon Source
- Massive quantum systems as interfaces of quantum mechanics and gravity
- Generation and analysis of correlated pairs of photons on board a nanosatellite
- Strategies for achieving high key rates in satellite-based QKD
- Coherent control of single photon states
- Towards metropolitan free-space quantum networks
- Analog gravity from electrodynamics in non-linear media
- Quantum communications and quantum metrology in the spacetime of a rotating planet
- Analysis of satellite-to-ground quantum key distribution with adaptive optics
- Analysis of atmospheric effects on satellite based quantum communication: A comparative study
- Spacetime effects on wavepackets of coherent light
- Opportunistic Federation of CubeSat Constellations: a Game-Changing Paradigm Enabling Enhanced IoT Services in the Sky
- Relativistic quantum communication between harmonic oscillator detectors
- Quantum-metrology estimation of spacetime parameters of the Earth outperforming classical precision
- Photons and static gravity
- Single-photon interference over 8.4 km urban atmosphere: towards testing quantum effects in curved spacetime with photons
- Gravitational distortion on photon state at the vicinity of the Earth
- Intermodal quantum key distribution field trial with active switching between fiber and free-space channels
- Gravitational redshift induces quantum interference
- Distributed Quantum Computing: Applications and Challenges
- Quantum Internet in the Sky: Vision, Challenges, Solutions, and Future Directions
- Introduction to gravitational redshift of quantum photons propagating in curved spacetime
- Emulation of satellite up-link quantum communication with entangled photons