Heralded Quantum Entanglement between Distant Matter Qubits
arXiv:1401.4908 · doi:10.1038/srep10110
Abstract
We propose a scheme to realize heralded quantum entanglement between two distant matter qubits using two atom systems. Our proposal does not need any photon interference. We also present a general theory of outcome state of non-monochromatic incident light and finite interaction time.
6 pages, 6 figures
References in corpus (14)
- Experimental quantum teleportation
- Heralded entanglement between solid-state qubits separated by 3 meters
- Hacking commercial quantum cryptography systems by tailored bright illumination
- An Elementary Quantum Network of Single Atoms in Optical Cavities
- Room temperature entanglement between distant single spins in diamond
- A Single-Atom Quantum Memory
- Reversible state transfer between light and a single trapped atom
- Efficient Teleportation between Remote Single-Atom Quantum Memories
- Demonstration of entanglement-by-measurement of solid state qubits
- Demonstration of quantum entanglement between a single electron spin confined to an InAs quantum dot and a photon
- Detection loophole in asymmetric Bell experiments
- Spontaneous emission spectrum of a two-level atom in a very high Q cavity
- Single-photon time-dependent spectra in coupled cavity arrays
- Detection efficiency for loophole-free Bell tests with entangled states affected by colored noise