论文标题
巡回微波光子的广义猫状态的实验制备
Experimental preparation of generalized cat states for itinerant microwave photons
论文作者
论文摘要
广义猫状态代表连贯状态的任意叠加,这在各种量子信息处理方案中非常重要。在这里,我们通过反映包含超导二极管的微波腔的相干状态光子来证明在微波域中创建广义巡回猫状态的多功能方法。我们表明,通过对Qubit状态的连贯控制,可以实现对相干状态叠加的完全控制。通过量子态依赖反射光子场的量子层造影量验证准备的猫状态。我们基于资源理论进一步量化了准备的猫状态中的量子相干性,从而揭示了对相干状态叠加的良好实验控制。还分析了光子数统计量和挤压特性。值得注意的是,在实验状态下观察到了四阶挤压。这些结果开辟了用于量子信息处理目的应用通用猫州的新可能性。
Generalized cat states represent arbitrary superpositions of coherent states, which are of great importance in various quantum information processing protocols. Here we demonstrate a versatile approach to creating generalized itinerant cat states in the microwave domain, by reflecting coherent state photons from a microwave cavity containing a superconducting qubit. We show that, with a coherent control of the qubit state, a full control over the coherent state superposition can be realized. The prepared cat states are verified through quantum state tomography of the qubit state dependent reflection photon field. We further quantify quantum coherence in the prepared cat states based on the resource theory, revealing a good experimental control on the coherent state superpositions. The photon number statistic and the squeezing properties are also analyzed. Remarkably, fourth-order squeezing is observed in the experimental states. Those results open up new possibilities of applying generalized cat states for the purpose of quantum information processing.