Coherent control of a nanomechanical two-level system
arXiv:1212.3172 · doi:10.1038/nphys2666
Abstract
The Bloch sphere is a generic picture describing a coupled two-level system and the coherent dynamics of its superposition states under control of electromagnetic fields. It is commonly employed to visualise a broad variety of phenomena ranging from spin ensembles and atoms to quantum dots and superconducting circuits. The underlying Bloch equations describe the state evolution of the two-level system and allow characterising both energy and phase relaxation processes in a simple yet powerful manner. Here we demonstrate the realisation of a nanomechanical two-level system which is driven by radio frequency signals. It allows to extend the above Bloch sphere formalism to nanoelectromechanical systems. Our realisation is based on the two orthogonal fundamental flexural modes of a high quality factor nanostring resonator which are strongly coupled by a dielectric gradient field. Full Bloch sphere control is demonstrated via Rabi, Ramsey and Hahn echo experiments. This allows manipulating the classical superposition state of the coupled modes in amplitude and phase and enables deep insight into the decoherence mechanisms of nanomechanical systems. We have determined the energy relaxation time T1 and phase relaxation times T2 and T2*, and find them all to be equal. This not only indicates that energy relaxation is the dominating source of decoherence, but also demonstrates that reversible dephasing processes are negligible in such collective mechanical modes. We thus conclude that not only T1 but also T2 can be increased by engineering larger mechanical quality factors. After a series of ground-breaking experiments on ground state cooling and non-classical signatures of nanomechanical resonators in recent years, this is of particular interest in the context of quantum information processing.
References in corpus (10)
- Sideband Cooling Micromechanical Motion to the Quantum Ground State
- Superconducting qubit in waveguide cavity with coherence time approaching 0.1ms
- Opto-mechanical transducers for long-distance quantum communication
- A short walk through quantum optomechanics
- Coherent phonon manipulation in coupled mechanical resonators
- Quenching Spin Decoherence in Diamond through Spin Bath Polarization
- Minimization of phonon-tunneling dissipation in mechanical resonators
- Quantum Information Processing with Nanomechanical Qubits
- Life after charge noise: recent results with transmon qubits
- Frequency and Q-factor control of nanomechanical resonators
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