论文标题

工程纯粹与非线性耦合与夸顿

Engineering Purely Nonlinear Coupling with the Quarton

论文作者

Ye, Yufeng, Peng, Kaidong, Naghiloo, Mahdi, Cunningham, Gregory, O'Brien, Kevin P.

论文摘要

超导量子台和/或光子的强非线性耦合是量子信息处理的关键基础。由于约瑟夫森非线性的扰动性,线性耦合经常在色散状态中用于近似于非线性耦合。但是,这种色散耦合很弱,而潜在的线性耦合将局部模式混合在一起,例如,将不必要的自kerr分布到光子模式。在这里,我们使用分射剂在两个线性解耦的transmon Qubs之间产生纯粹的非线性耦合。与现有方案相比,夸脱的零$ ϕ^2 $电势可以使巨大的GIGAHERTZ级交叉Kerr更强大,而Quarton的正$ ϕ^4 $势可以取消Qubers的负面自我,以将它们线性化成谐振器。这种巨大的跨kerr在裸露的Qubit-Qubit,Qubit-Photon,甚至光子光子的裸机模式之间都是理想的选择,例如单微波光子检测和Bosonic代码的实现。

Strong nonlinear coupling of superconducting qubits and/or photons is a critical building block for quantum information processing. Due to the perturbative nature of the Josephson nonlinearity, linear coupling is often used in the dispersive regime to approximate nonlinear coupling. However, this dispersive coupling is weak and the underlying linear coupling mixes the local modes which, for example, distributes unwanted self-Kerr to photon modes. Here, we use the quarton to yield purely nonlinear coupling between two linearly decoupled transmon qubits. The quarton's zero $ϕ^2$ potential enables a giant gigahertz-level cross-Kerr which is an order of magnitude stronger compared to existing schemes, and the quarton's positive $ϕ^4$ potential can cancel the negative self-Kerr of qubits to linearize them into resonators. This giant cross-Kerr between bare modes of qubit-qubit, qubit-photon, and even photon-photon is ideal for applications such as single microwave photon detection and implementation of bosonic codes.

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