论文标题
多级量子状态的演变的高保真跟踪
High-fidelity tracking of the evolution of multilevel quantum states
论文作者
论文摘要
量子断层扫描方法使我们能够以高精度跟踪多个维度的Hilbert空间中多级量子系统(Qudits)的演变。用于量子控制的开发算法基于Lorentz转化组的旋转表示。在最简单的一量状态的情况下,事实证明,除了在Bloch球体上进行三维旋转外,还可以引入四维Lorentz伪曲线,类似于相对论的特殊理论的转换。我们表明,通过微弱扰动的自适应量子测量结果,反馈可以提供对量子系统的高精度控制,同时仅将弱扰动引入初始量子状态。事实证明,连同量子系统通过其弱扰动控制,开发的用于控制量子系统状态演化的算法可以非常有效,从而比任何标准的POVM(正效率值衡量指标)方案具有更高的测量精度。该研究的结果对于开发用于量子状态和控制的最佳自适应方法很重要。获得的结果对于开发量子信息技术的高精度控制方法至关重要。
The method of quantum tomography, which allows us to track with high accuracy the evolution of multilevel quantum systems (qudits) in Hilbert spaces of various dimensions is presented. The developed algorithms for quantum control are based on the use of the spinor representation of the Lorentz transformation group. In the simplest case of one-qubit states, it turns out that, in addition to three-dimensional rotations on the Bloch sphere, one can introduce four-dimensional Lorentz pseudorotations, similar to the transformations of the special theory of relativity. We show that feedback through weakly perturbing adaptive quantum measurements turns out to be capable of providing high-precision control of the quantum system, while introducing only weak perturbations into the initial quantum state. It turns out that, together with the control of a quantum system through its weak perturbation, the developed algorithms for controlling the evolution of the state of a quantum system can be super-efficient, providing a higher measurement accuracy than any standard POVM (Positive-Operator Valued Measure) protocols. The results of the study are important for the development of optimal adaptive methods for quantum states and operations controlling. The results obtained are essential for the development of high-precision control methods for quantum information technologies.