We present a study of the coherence properties of a variety of motional states of a single ion confined in a Penning ion trap. We demonstrate that the motion of the ion has a coherence time of the order of 1 s, using Ramsey interferometry. We introduce a technique for preparing the ion in an incoherent superposition of highly-excited motional states using a simple modification of optical sideband cooling. Coherent manipulation of these states allows measurements of optical and motional coherence to be carried out. We show that these highly-excited motional state superpositions have long coherence times despite the incoherent preparation of the states. Such states can be useful for sensitive motional dephasing measurements.
CITATION STYLE
Jarlaud, V., Hrmo, P., Joshi, M. K., & Thompson, R. C. (2021). Coherence properties of highly-excited motional states of a trapped ion. Journal of Physics B: Atomic, Molecular and Optical Physics, 54(1). https://doi.org/10.1088/1361-6455/abc271
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