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Vibration-induced field fluctuations in a superconducting magnet

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arxiv 1512.00801 v2 pith:HM2QXMSL submitted 2015-12-02 quant-ph cond-mat.supr-connucl-exphysics.atom-ph

classification quant-phcond-mat.supr-connucl-exphysics.atom-ph
keywords fieldmagnetsuperconductingcoherencecontrolelectron-spinfluctuationshomogeneous
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Superconducting magnets enable precise control of nuclear and electron spins, and are used in experiments that explore biological and condensed matter systems, and fundamental atomic particles. In high-precision applications, a common view is that that slow (<1 Hz) drift of the homogeneous magnetic field limits control and measurement precision. We report on previously undocumented higher-frequency field noise (10 Hz to 200 Hz) that limits the coherence time of 9Be+ electron-spin qubits in the 4.46 T field of a superconducting magnet. We measure a spin-echo T2 coherence time of ~6 ms for the 9Be+ electron-spin resonance at 124 GHz, limited by part-per-billion fractional fluctuations in the magnet's homogeneous field. Vibration isolation of the magnet improved T2 to ~50 ms.

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