Teleportation in an indivisible quantum system
arXiv:1512.05168 · doi:10.1515/qmetro-2016-0003
Abstract
Teleportation protocol is conventionally treated as a method for quantum state transfer between two spatially separated physical carriers. Recent experimental progress in manipulation with high-dimensional quantum systems opens a new framework for implementation of teleportation protocols. We show that the one-qubit teleportation can be considered as a state transfer between subspaces of the whole Hilbert space of an indivisible eight-dimensional system. We explicitly show all corresponding operations and discuss an alternative way of implementation of similar tasks.
4 pages, 1 figure, 1 table
References in corpus (6)
- Coherence and Decay of Higher Energy Levels of a Superconducting Transmon Qubit
- Multilevel superconducting circuits as two-qubit systems: Operations, state preparation, and entropic inequalities
- State-independent experimental tests of quantum contextuality in a three dimensional system
- Multi-photon dressing of an anharmonic superconducting many-level quantum circuit
- Quantum teleportation with identical particles
- On Testing Entropic Inequalities for Superconducting Qudit