Labaziewicz Jaroslaw, Ge Yufei, Antohi Paul, Leibrandt David, Brown Kenneth R, Chuang Isaac L
Center for Ultracold Atoms, Department of Physics, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.
Phys Rev Lett. 2008 Jan 11;100(1):013001. doi: 10.1103/PhysRevLett.100.013001. Epub 2008 Jan 10.
Dense arrays of trapped ions provide one way of scaling up ion trap quantum information processing. However, miniaturization of ion traps is currently limited by sharply increasing motional state decoherence at sub-100 mum ion-electrode distances. We characterize heating rates in cryogenically cooled surface-electrode traps, with characteristic sizes in the 75 to 150 mum range. Upon cooling to 6 K, the measured rates are suppressed by 7 orders of magnitude, 2 orders of magnitude below previously published data of similarly sized traps operated at room temperature. The observed noise depends strongly on the fabrication process, which suggests further improvements are possible.
密集排列的俘获离子提供了一种扩大离子阱量子信息处理规模的方法。然而,目前离子阱的小型化受到限制,因为在离子与电极距离小于100微米时,运动状态退相干会急剧增加。我们对低温冷却的表面电极阱中的加热速率进行了表征,其特征尺寸在75至150微米范围内。冷却至6 K时,测得的速率被抑制了7个数量级,比之前发表的尺寸类似的室温操作阱的数据低2个数量级。观察到的噪声强烈依赖于制造工艺,这表明进一步改进是可能的。