Accurate microwave control and real-time diagnostics of neutral-atom qubits
Abstract
We demonstrate accurate single-qubit control in an ensemble of atomic qubits trapped in an optical lattice. The qubits are driven with microwave radiation, and their dynamics tracked by optical probe polarimetry. Real-time diagnostics is crucial to minimize systematic errors and optimize the performance of single-qubit gates, leading to fidelities of 0.99 for single-qubit π rotations. We show that increased robustness to large, deliberately introduced errors can be achieved through the use of composite rotations. However, during normal operation the combination of very small intrinsic errors and additional decoherence during the longer pulse sequences precludes any significant performance gain in our current experiment.
- Publication:
-
Physical Review A
- Pub Date:
- February 2009
- DOI:
- 10.1103/PhysRevA.79.022316
- arXiv:
- arXiv:0811.3634
- Bibcode:
- 2009PhRvA..79b2316R
- Keywords:
-
- 03.67.Lx;
- 42.50.Dv;
- 82.56.Jn;
- 03.67.-a;
- Quantum computation;
- Nonclassical states of the electromagnetic field including entangled photon states;
- quantum state engineering and measurements;
- Pulse sequences in NMR;
- Quantum information;
- Quantum Physics
- E-Print:
- 9 pages, 7 figures