Quantronics Group, Service de Physique de l'État Condensé, CNRS UMR 3680, IRAMIS, CEA-Saclay, 91191 Gif-sur-Yvette, France.
Quantronics Group, Service de Physique de l'État Condensé, CNRS UMR 3680, IRAMIS, CEA-Saclay, 91191 Gif-sur-Yvette, France. Centro Atómico Bariloche and Instituto Balseiro, Comisión Nacional de Energía Atómica, 8400 Bariloche, Argentina.
Science. 2015 Sep 11;349(6253):1199-202. doi: 10.1126/science.aab2179.
Coherent control of quantum states has been demonstrated in a variety of superconducting devices. In all of these devices, the variables that are manipulated are collective electromagnetic degrees of freedom: charge, superconducting phase, or flux. Here we demonstrate the coherent manipulation of a quantum system based on Andreev bound states, which are microscopic quasi-particle states inherent to superconducting weak links. Using a circuit quantum electrodynamics setup, we performed single-shot readout of this Andreev qubit. We determined its excited-state lifetime and coherence time to be in the microsecond range. Quantum jumps and parity switchings were observed in continuous measurements. In addition to having possible quantum information applications, such Andreev qubits are a test-bed for the physics of single elementary excitations in superconductors.
相干控制量子态已在各种超导设备中得到证实。在所有这些设备中,可被操纵的变量都是集体电磁自由度:电荷、超导相位或通量。在这里,我们展示了基于安德烈夫束缚态的量子系统的相干操纵,安德烈夫束缚态是超导弱连接中固有的微观准粒子态。我们使用电路量子电动力学装置,对这个安德烈夫量子位进行了单次读出。我们确定了其激发态寿命和相干时间在微秒范围内。在连续测量中观察到了量子跃迁和奇偶校验切换。除了可能有量子信息应用之外,这种安德烈夫量子位还是超导中单元素激发物理的一个测试平台。