Wigner-function description of quantum teleportation in arbitrary dimensions and continuous limit
arXiv:quant-ph/0106109 · doi:10.1103/PhysRevA.64.034301
Abstract
We present a unified approach to quantum teleportation in arbitrary dimensions based on the Wigner-function formalism. This approach provides us with a clear picture of all manipulations performed in the teleportation protocol. In addition within the framework of the Wigner-function formalism all the imperfections of the manipulations can be easily taken into account.
8 pages, LaTeX, 1 figure (included). Accepted for publication in Phys. Rev. A A minor correction added on May 25
References in corpus (1)
Cited by in corpus (25)
- Discrete phase space based on finite fields
- Quasi-probability representations of quantum theory with applications to quantum information science
- Classicality in discrete Wigner functions
- Discrete Wigner functions and quantum computational speedup
- Qubits in phase space: Wigner function approach to quantum error correction and the mean king problem
- Discrete Wigner functions and the phase space representation of quantum teleportation
- Wigner Functions and Separability for Finite Systems
- Quasiprobability distribution functions for periodic phase-spaces: I. Theoretical Aspects
- Mutually unbiased bases and discrete Wigner functions
- Extended Cahill and Glauber formalism for finite dimensional spaces II. Applications in quantum tomography and quantum teleportation
- Quantum algorithms for phase space tomography
- Quantum correlation exists in any non-product state
- Discrete Wigner distribution for two qubits: a characterization of entanglement properties
- Operational quasiprobabilities for qudits
- Generation of all sets of mutually unbiased bases for three-qubit systems
- Wigner separability entropy and complexity of quantum dynamics
- Generalized measurements via programmable quantum processor
- Optical experiment to test negative probability in context of quantum-measurement selection
- Harnessing quantumness of states using discrete Wigner functions under (non)-Markovian quantum channels
- A new method of construction of all sets of mutually unbiased bases for two-qubit systems
- Interference in discrete Wigner functions
- Transition probabilities and transition rates in discrete phase space
- The correspondence between mutually unbiased bases and mutually orthogonal extraordinary supersquares
- Teleportation for septuagenarians
- Quantum information transfer using weak measurements and any non-product resource state