论文标题
在开放的集体系统中绝热地控制无腐蚀无底面
Adiabatic Control of Decoherence-Free-Subspaces in an Open Collective System
论文作者
论文摘要
我们提出了一种在耗散腔内使用无腐蚀子空间(DFS)绝热控制原子集合的方法。我们可以通过将一个田地注入腔内,从而在解构上干扰集合的发射幅度来设计系统的Lindblad跳跃操作员的特定特征状态。与以前的绝热DFS提案相反,我们的计划在存在集体腐蚀的情况下创建了DFS。因此,我们有能力设计具有高多粒子纠缠的较高纠缠的能力,这些纠缠可能会用于量子信息科学或计量学。我们进一步展示了一种更优化的驾驶方案,该方案利用了从所谓的绝热标准获得的可能的绝症进化知识。这使我们能够在不取决于合奏中原子数量的时间尺度上发展到具有异常高的忠诚度的所需状态。通过绝热地对DFS特征态进行工程,我们的方法可以比以前仅使用耗散抑制为所需状态的方案进行更快的状态准备。
We propose a method to adiabatically control an atomic ensemble using a decoherence-free subspace (DFS) within a dissipative cavity. We can engineer a specific eigenstate of the system's Lindblad jump operators by injecting a field into the cavity which deconstructively interferes with the emission amplitude of the ensemble. In contrast to previous adiabatic DFS proposals, our scheme creates a DFS in the presence of collective decoherence. We therefore have the ability to engineer states that have high multi-particle entanglements which may be exploited for quantum information science or metrology. We further demonstrate a more optimized driving scheme that utilizes the knowledge of possible diabatic evolution gained from the so-called adiabatic criteria. This allows us to evolve to a desired state with exceptionally high fidelity on a time scale that does not depend on the number of atoms in the ensemble. By engineering the DFS eigenstate adiabatically, our method allows for faster state preparation than previous schemes that rely on damping into a desired state solely using dissipation.