Berezovsky J, Mikkelsen M H, Stoltz N G, Coldren L A, Awschalom D D
Center for Spintronics and Quantum Computation, University of California, Santa Barbara, CA 93106, USA.
Science. 2008 Apr 18;320(5874):349-52. doi: 10.1126/science.1154798.
Most schemes for quantum information processing require fast single-qubit operations. For spin-based qubits, this involves performing arbitrary coherent rotations of the spin state on time scales much faster than the spin coherence time. By applying off-resonant, picosecond-scale optical pulses, we demonstrated the coherent rotation of a single electron spin through arbitrary angles up to pi radians. We directly observed this spin manipulation using time-resolved Kerr rotation spectroscopy and found that the results are well described by a model that includes the electronnuclear spin interaction. Measurements of the spin rotation as a function of laser detuning and intensity confirmed that the optical Stark effect is the operative mechanism.
大多数量子信息处理方案都需要快速的单比特操作。对于基于自旋的量子比特而言,这涉及到在比自旋相干时间快得多的时间尺度上对自旋态进行任意的相干旋转。通过施加非共振的皮秒级光脉冲,我们证明了单个电子自旋能够通过高达π弧度的任意角度进行相干旋转。我们使用时间分辨克尔旋转光谱直接观测到了这种自旋操控,并发现结果可以由一个包含电子-核自旋相互作用的模型很好地描述。对自旋旋转随激光失谐和强度变化的测量证实了光学斯塔克效应是其作用机制。