Quantum computing with semiconductor double-dot molecules on a chip
arXiv:0908.3719 · doi:10.1016/j.physleta.2010.04.042
Abstract
We develop a scalable architecture for quantum computation using controllable electrons of double-dot molecules coupled to a microwave stripline resonator on a chip, which satisfies all Divincenzo criteria. We analyze the performance and stability of all required operations and emphasize that all techniques are feasible with current experimental technologies.
5 pages, 2 figures, references added
References in corpus (7)
- Quantum information processing with circuit quantum electrodynamics
- Approaching Unit Visibility for Control of a Superconducting Qubit with Dispersive Readout
- Relaxation, dephasing, and quantum control of electron spins in double quantum dots
- Ultra-long distance interaction between spin qubits
- Quantum information processing and multiatom entanglement engineering with a thermal cavity
- Generation of quantum-dot cluster states with superconducting transmission line resonator
- The Exchange Gate in Solid State Spin Quantum Computation: The Applicability of the Heisenberg Model