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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Experimental realization of two-qubit non-Abelian geometric gates for fixed frequency superconducting qubits
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APS -APS March Meeting 2017 - Event - Experimental realization of two-qubit non-Abelian geometric gates for fixed frequency superconducting qubits

机译:APS -APS 3月会议2017年 - 事件 - 用于固定频率超导Qubits的双Qubit非雅中几何栅极的实验性实现

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Fixed-frequency superconducting qubits are controlled with microwave pulses both to generate single-qubit rotations and to activate entangling interactions. A two-qubit entangling gate, needed to form a universal set of logic gates, can be created in many ways. Here we show an experimental implementation of a two-qubit non-Abelian geometric gate. These gates have the potential to be less sensitive to certain types of noise since the state vectors are swept along closed paths in Hilbert space. With two transmon qubits connected via a resonator we implement an entangling two-qubit gate by creating a lambda system using the transitions between the second excited state of each qubit and the first excited state of the resonator. The non-Abelian geometric gate is activated by simultaneously driving these two transitions. Arbitrary rotations in a two-qubit subspace can be created by changing the amplitudes and phases of the two drives. This two-qubit gate combined with non-Abelian geometric single qubit rotations completes the necessary toolbox for a quantum computer based on non-Abelian geometric gates.
机译:使用微波脉冲控制固定频率超导Qubits以产生单态旋转并激活缠结交互。可以在许多方面创建一个两个Qubit缠绕门,以形成通用的逻辑门。在这里,我们展示了双Qubit非雅中几何门的实验实施。由于状态向量沿着希尔伯特空间中的封闭路径横扫,这些门具有对某些类型的噪声的潜力。对于通过谐振器连接的两个透射符号,我们通过使用每个Qubit的第二激发状态和谐振器的第一激励状态之间的转换来创建Lambda系统来实现缠绕的双量标门。通过同时驱动这两个转换来激活非阿比越几何门。可以通过更改两个驱动器的幅度和阶段来创建双态子空间中的任意旋转。这种双态栅极与非雅中几何单个QUBBit旋转结合完成了基于非雅中几何门的量子计算机的必要工具箱。

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