Institute for Quantum Electronics, ETH Zürich, Otto-Stern-Weg 1, 8093 Zürich, Switzerland.
Phys Rev Lett. 2016 Feb 26;116(8):080502. doi: 10.1103/PhysRevLett.116.080502. Epub 2016 Feb 24.
We demonstrate single-qubit operations by transporting a beryllium ion with a controlled velocity through a stationary laser beam. We use these to perform coherent sequences of quantum operations, and to perform parallel quantum logic gates on two ions in different processing zones of a multiplexed ion trap chip using a single recycled laser beam. For the latter, we demonstrate individually addressed single-qubit gates by local control of the speed of each ion. The fidelities we observe are consistent with operations performed using standard methods involving static ions and pulsed laser fields. This work therefore provides a path to scalable ion trap quantum computing with reduced requirements on the optical control complexity.
我们通过控制铍离子以受控速度穿过静止的激光束来演示单量子比特操作。我们使用这些来执行相干的量子操作序列,并使用单个回收激光束在复用离子阱芯片的不同处理区域中的两个离子上执行并行量子逻辑门。对于后者,我们通过局部控制每个离子的速度来证明可单独寻址的单量子比特门。我们观察到的保真度与使用涉及静态离子和脉冲激光场的标准方法执行的操作一致。因此,这项工作为具有降低的光学控制复杂性要求的可扩展离子阱量子计算提供了一条途径。