Lim Jongseok, Lee Han-gyeol, Lee Sangkyung, Park Chang-Yong, Ahn Jaewook
1] Department of Physics, KAIST, Daejeon 305-701, Korea [2].
Department of Physics, KAIST, Daejeon 305-701, Korea.
Sci Rep. 2014 Jul 29;4:5867. doi: 10.1038/srep05867.
Quantum computing is based on unitary operations in a two-level quantum system, a qubit, as the fundamental building block, and the ability to perform qubit operations in an amount of time that is considerably shorter than the coherence time is an essential requirement for quantum computation. Here, we present an experimental demonstration of arbitrary single-qubit SU(2) quantum gate operations achieved at a terahertz clock speed. Implemented by coherent control methods of tailored ultrafast laser interaction with cold rubidium atomic qubits, Bloch vector manipulation about all three rotational axes was successfully demonstrated. The dynamic evolution of the qubits was successfully measured by devised femtosecond Ramsey interferometry. We anticipate this demonstration to be a starting point to process quantum algorithm in a simplified manner by a programmed sequence of femtosecond laser pulses.
量子计算基于两能级量子系统(量子比特)中的酉操作,量子比特作为基本构建单元,而在远短于相干时间的时长内执行量子比特操作的能力是量子计算的一项基本要求。在此,我们展示了以太赫兹时钟速度实现的任意单量子比特SU(2)量子门操作的实验演示。通过定制的超快激光与冷铷原子量子比特的相干控制方法实现,成功演示了围绕所有三个旋转轴的布洛赫矢量操纵。通过设计的飞秒拉姆齐干涉测量法成功测量了量子比特的动态演化。我们预计这一演示将成为通过飞秒激光脉冲的编程序列以简化方式处理量子算法的起点。