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Microfabricated surface-electrode ion trap for scalable quantum information processing
Authors:Seidelin S  Chiaverini J  Reichle R  Bollinger J J  Leibfried D  Britton J  Wesenberg J H  Blakestad R B  Epstein R J  Hume D B  Itano W M  Jost J D  Langer C  Ozeri R  Shiga N  Wineland D J
Institution:Time and Frequency Division, NIST, Boulder, Colorado 80305, USA. sidelin@boulder.nist.gov
Abstract:Individual laser-cooled 24Mg+ ions are confined in a linear Paul trap with a novel geometry where gold electrodes are located in a single plane and the ions are trapped 40 microm above this plane. The relatively simple trap design and fabrication procedure are important for large-scale quantum information processing (QIP) using ions. Measured ion motional frequencies are compared to simulations. Measurements of ion recooling after cooling is temporarily suspended yield a heating rate of approximately 5 motional quanta per millisecond for a trap frequency of 2.83 MHz, sufficiently low to be useful for QIP.
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