论文标题
在准备和衡量方案中几乎几乎
Almost qudits in the prepare-and-measure scenario
论文作者
论文摘要
在仅知道希尔伯特空间的维度的情况下,经常研究量子通信。但是,分配一个精确的维度通常是实际上更高维度的过程的近似值。在这里,我们介绍并调查了载体中编码的量子信息,这些信息几乎但并非完全与标准Qudits相对应。我们通过展示了小的高维组件如何显着损害已建立协议的结论,从而证明了该概念与半独立量子信息的相关性。然后,我们基于半芬矿放松提供了一种通用方法,以界定几乎Qudit相关性的集合,并将其应用于纠正所证明的问题。该方法还提供了一种新型的系统方法,可以针对具有未进入设备的经典和量子尺寸独立于设备的测试的众所周知的任务。最后,我们还考虑将几乎Qubit系统视为实验者可用的物理资源,并确定众所周知的随机访问代码的最佳量子协议。
Quantum communication is often investigated in scenarios where only the dimension of Hilbert space is known. However, assigning a precise dimension is often an approximation of what is actually a higher-dimensional process. Here, we introduce and investigate quantum information encoded in carriers that nearly, but not entirely, correspond to standard qudits. We demonstrate the relevance of this concept for semi-device-independent quantum information by showing how small higher-dimensional components can significantly compromise the conclusions of established protocols. Then we provide a general method, based on semidefinite relaxations, for bounding the set of almost qudit correlations, and apply it to remedy the demonstrated issues. This method also offers a novel systematic approach to the well-known task of device-independent tests of classical and quantum dimensions with unentangled devices. Finally, we also consider viewing almost qubit systems as a physical resource available to the experimenter and determine the optimal quantum protocol for the well-known Random Access Code.