High fidelity single qubit operations using pulsed electron paramagnetic resonance
Physical Review Letters 95:20 (2005)
Abstract:
Systematic errors in spin rotation operations using simple rf pulses place severe limitations on the usefulness of the pulsed magnetic resonance methods in quantum computing applications. In particular, the fidelity of quantum logic operations performed on electron spin qubits falls well below the threshold for the application of quantum algorithms. Using three independent techniques, we demonstrate the use of composite pulses to improve this fidelity by several orders of magnitude. The observed high-fidelity operations are limited by pulse phase errors, but nevertheless fall within the limits required for the application of quantum error correction. © 2005 The American Physical Society.Hyperfine structure of Sc@C82 from ESR and DFT
Nanotechnology 16:11 (2005) 2469-2473
Abstract:
The electron spin g- and hyperfine tensors of the endohedral metallofullerene Sc@C82 are anisotropic. Using electron spin resonance (ESR) and density functional theory (DFT), we can relate their principal axes to the coordinate frame of the molecule, finding that the g-tensor is not axially symmetric. The Sc bond with the cage is partly covalent and partly ionic. Most of the electron spin density is distributed around the carbon cage, but 5% is associated with the scandium dyz orbital, and this drives the observed anisotropy. © 2005 IOP Publishing Ltd.High fidelity single qubit operations using pulsed electron paramagnetic resonance
Physical Review Letters 95 (2005) 200501 4pp
Robust superconducting state in the low-quasiparticle-density organic metals β″-(BEDT-TTF)4[(H3O)M(C2O4)3]Y: Superconductivity due to proximity to a charge-ordered state
Physical Review B Condensed Matter and Materials Physics 72:1 (2005)