Efficient high-fidelity quantum computation using matter qubits and linear optics
Bristol Laboratories (United Kingdom) · Hewlett-Packard (United Kingdom) · +1 more institution
Abstract
We propose a practical, scalable, and efficient scheme for quantum computation using spatially separated matter qubits and single-photon interference effects. The qubit systems can be nitrogen-vacancy centers in diamond, Pauli-blockade quantum dots with an excess electron, or trapped ions with optical transitions, which are each placed in a cavity and subsequently entangled using a double-heralded single-photon detection scheme. The fidelity of the resulting entanglement is extremely robust against the most important errors such as detector loss, spontaneous emission, and mismatch of cavity parameters. We demonstrate how this entangling operation can be used to efficiently generate cluster states of many…
Citation impact
- FWCI
- 57.87
- Percentile
- 100%
- References
- 27
Authors
2Topics & keywords
- Qubit
- Quantum computer
- Physics
- Quantum entanglement
- Cluster state
- Quantum mechanics
- Quantum teleportation
- Photon