论文标题
通过驱动的量子狂犬模型多尖的状态生成和通用玻色子控制
Multi-squeezed state generation and universal bosonic control via a driven quantum Rabi model
论文作者
论文摘要
对基于量子的技术的关键,对掌位自由度的普遍控制是关键。但是,这种普遍的控制需要执行苛刻的非高斯门的能力,即在玻色杆操作员级别上比季度相互作用高。在这里,我们考虑了一个单一的辅助两级系统,该系统通过驱动的量子性兔模型与玻色子感兴趣的模式相互作用,并表明它足以诱导大型高斯和非高斯门的确定性实现,这又提供了通用的玻感控制。该方案减少了先前基于Ancilla的方法的开销,在这些方法中,需要长时间序列才能产生高度填充的目标。实际上,我们的方法自然会产生多方面状态的高保真制备(即,流离失所和挤压状态的高阶概括)具有较大的相位空间wigner nigner负性。通过生成立方相栅极进一步说明通用控制。最后,我们在存在逼真的噪声的情况下解决了该方法的弹性。由于所考虑的相互作用的无处不在,我们的方案可能会在不同设置中的骨状状态的设计,准备和控制中打开新的途径。
Universal control over a bosonic degree of freedom is key in the quest for quantum-based technologies. Such universal control requires however the ability to perform demanding non-Gaussian gates -- namely, higher-than-quadratic interactions at the level of the bosonic operators. Here we consider a single ancillary two-level system, interacting with the bosonic mode of interest via a driven quantum Rabi model, and show that it is sufficient to induce the deterministic realization of a large class of Gaussian and non-Gaussian gates, which in turn provide universal bosonic control. This scheme reduces the overhead of previous ancilla-based methods where long gate-sequences are required to generate highly populated targets. In fact, our method naturally yields the high-fidelity preparation of multi-squeezed states -- i.e., the high-order generalization of displaced and squeezed states -- which feature large phase-space Wigner negativities. The universal control is further illustrated by generating a cubic-phase gate. Finally, we address the resilience of the method in the presence of realistic noise. Due to the ubiquity of the considered interaction, our scheme might open new avenues in the design, preparation, and control of bosonic states in different setups.