论文标题
稳定对相干状态的实验实现和表征
Experimental Realization and Characterization of Stabilized Pair Coherent States
论文作者
论文摘要
这对相干状态(PC)是Glauber相干状态到两个谐波振荡器的理论扩展。这是一类有趣的非高斯连续变量纠缠状态,也是有希望的量子误差校正代码的核心:配对CAT代码。在这里,我们报告了两个超导腔中微波光子的一对相干状态的实验证明。我们实施了跨载体配对驱动的耗散过程,该过程可以节省腔之间的光子数差异,并使状态稳定在特定的复合幅度上。我们进一步引入了量子子空间断层扫描技术,该技术可以直接测量具有高维量子状态的单个相干元素而没有全球层析成像。我们使用此子空间断层扫描以及直接测量光子数差异和关节智能功能来表征每个腔中最多4个光子的两种量子状态。我们将腔与耗散储层模式之间的虚假跨kerr相互作用确定为一个突出的倾向通道,该通道限制了当前方案中的稳态相干性。我们的实验提供了一组储层工程和状态表征工具,用于研究量子光学器件并在超导电路中实现多模式的骨码。
The pair coherent state (PCS) is a theoretical extension of the Glauber coherent state to two harmonic oscillators. It is an interesting class of non-Gaussian continuous-variable entangled state and is also at the heart of a promising quantum error correction code: the pair cat code. Here we report an experimental demonstration of the pair coherent state of microwave photons in two superconducting cavities. We implement a cross-cavity pair-photon driven dissipation process, which conserves the photon number difference between cavities and stabilizes the state to a specific complex amplitude. We further introduce a technique of quantum subspace tomography, which enables direct measurements of individual coherence elements of a high-dimensional quantum state without global tomographic reconstruction. We characterize our two-mode quantum state with up to 4 photons in each cavity using this subspace tomography together with direct measurements of the photon number difference and the joint Wigner function. We identify the spurious cross-Kerr interaction between the cavities and our dissipative reservoir mode as a prominent dephasing channel that limits the steady-state coherence in our current scheme. Our experiment provides a set of reservoir engineering and state characterization tools to study quantum optics and implement multi-mode bosonic codes in superconducting circuits.