论文标题
Majorana Qubits的色散读数
Dispersive readout of Majorana qubits
论文作者
论文摘要
我们分析了基于分散耦合与谐振器的读数方案。我们考虑了Majorana Qubits的两个变体:Majorana Transmon和Majoraana Box Qubit。在这两种情况下,Qubit-resonator的相互作用都可以在MHz范围内产生相当大的分散偏移,以获得合理的系统参数,从而可以具有高忠诚度的次数读数。对于Majoraana Transmons,用于读数的光结合相互作用明显保留了Majorana Parity,这导致了量子非态度(QND)读数的概念,该读数比对于常规电荷量子量强。相比之下,Majorana Box Qubit仅在谐振器较大的分散极限内恢复大约QND读数机制。我们还将分散读数与Majorana Box Qubit的纵向读数进行比较。我们表明,后者为合理的参数提供了更快,更高的保真度读数,同时具有明显的QND的其他优势,因此可能被证明是这些系统的更好读数机制。
We analyze a readout scheme for Majorana qubits based on dispersive coupling to a resonator. We consider two variants of Majorana qubits: the Majorana transmon and the Majorana box qubit. In both cases, the qubit-resonator interaction can produce sizeable dispersive shifts in the MHz range for reasonable system parameters, allowing for submicrosecond readout with high fidelity. For Majorana transmons, the light-matter interaction used for readout manifestly conserves Majorana parity, which leads to a notion of quantum nondemolition (QND) readout that is stronger than for conventional charge qubits. In contrast, Majorana box qubits only recover an approximately QND readout mechanism in the dispersive limit where the resonator detuning is large. We also compare dispersive readout to longitudinal readout for the Majorana box qubit. We show that the latter gives faster and higher fidelity readout for reasonable parameters, while having the additional advantage of being manifestly QND, and so may prove to be a better readout mechanism for these systems.