Superoscillations underlying remote state preparation for relativistic fields
@article{Ber2015SuperoscillationsUR, title={Superoscillations underlying remote state preparation for relativistic fields}, author={Ran Ber and Oded Kenneth and Benni Reznik}, journal={Physical Review A}, year={2015}, volume={91}, pages={052312} }
We present a physical (gedanken) implementation of a generalized remote state preparation of relativistic quantum field states for an arbitrary set of observers. The prepared states are created in regions that are outside the future light-cone of the generating region. The mechanism, which is based on utilizing the vacuum state of a relativistic quantum field as a resource, sheds light on the well known Reeh-Schlieder theorem, indicating its strong connection with the mathematical phenomenon of…
6 Citations
Remote State Preparation for Quantum Fields
- Physics
- 2015
Remote state preparation is generation of a desired state by a remote observer. In spite of causality, it is well known, according to the Reeh–Schlieder theorem, that it is possible for relativistic…
Asymmetric Bidirectional Controlled Remote State Preparation by Using a Seven-Particle Entangled State
- Physics, Mathematics
- 2017
We demonstrate that a seven-particle entangled state can be used to realize the deterministic asymmetric bidirectional controlled remote state preparation. That is to say Alice can remotely prepare…
Observation of Non-Hermitian Quantum Correlation Criterion in Mesoscopic Optomechanical System
- Physics
- 2016
Although many quantum correlation criteria have been proposed successively in recent years, it is still an open question how to observe these criteria with the non–Hermitian terms in themselves. We…
Scaling properties of superoscillations and the extension to periodic signals
- Physics
- 2015
Superoscillatory wave forms, i.e., waves that locally oscillate faster than their highest Fourier component, possess unusual properties that make them of great interest from quantum mechanics to…
Noise Effects and Perfect Controlled Remote State Preparation
- PhysicsInternational Journal of Theoretical Physics
- 2019
It is shown that it is better way to subject the qubits in different noise channels in order to increase the fidelity of the controlled remote state preparation protocol.
Entanglement on curved hypersurfaces: A field-discretizer approach
- Mathematics
- 2020
We propose a covariant scheme for measuring entanglement on general hypersurfaces in relativistic quantum field theory. For that, we introduce an auxiliary relativistic field, 'the discretizer', that…