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- W2795247686 abstract "We present an atom interferometry technique in which the beamsplitter is split into two separate operations. A microwave pulse first creates a spin-state superposition, before optical adiabatic passage spatially separates the arms of that superposition. Despite using a thermal atom sample in a small ($600 , mu$m) interferometry beam, this procedure delivers an efficiency of $99%$ per $hbar k$ of momentum separation. Utilizing this efficiency, we first demonstrate interferometry with up to $16hbar k$ momentum splitting and free-fall limited interrogation times. We then realize a single-source gradiometer, in which two interferometers measuring a relative phase originate from the same atomic wavefunction. Finally, we demonstrate a resonant interferometer with over 100 adiabatic passages, and thus over $ 400 hbar k$ total momentum transferred." @default.
- W2795247686 created "2018-04-06" @default.
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- W2795247686 date "2018-07-24" @default.
- W2795247686 modified "2023-10-14" @default.
- W2795247686 title "Efficient Adiabatic Spin-Dependent Kicks in an Atom Interferometer" @default.
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- W2795247686 doi "https://doi.org/10.1103/physrevlett.121.040402" @default.
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