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Precision Measurements of the ^{138}Ba^{+} 6s^{2}S_{1/2}-5d^{2}D_{5/2} Clock Transition
K J Arnold1,2, R Kaewuam1, S R Chanu1
1Centre for Quantum Technologies, National University of Singapore, 3 Science Drive 2, 117543 Singapore.
Abstract:
Measurement of the ^{138}Ba^{+} ^{2}S_{1/2}-^{2}D_{5/2} clock transition frequency and D_{5/2} Landé g_{J} factor are reported. The clock transition frequency ν_{Ba^{+}}=170126432449333.31±(0.39)_{stat}±(0.29)_{sys} Hz, is obtained with accuracy limited by the frequency calibration of the maser used as a reference oscillator. The Landé g_{J} factor for the ^{2}D_{5/2} level is determined to be g_{D}=1.20036739(24), which is a 30-fold improvement on previous measurements. The g-factor measurements are corrected for an ac-magnetic field from trap-drive-induced currents in the electrodes, and data taken over a range of magnetic fields underscores the importance of accounting for this systematic.
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