论文标题

不完美的经典数据的量子读数

Quantum readout of imperfect classical data

论文作者

Ortolano, Giuseppe, Ruo-Berchera, Ivano

论文摘要

由于错误和写作过程的不完美,可以完成物理支持中经典数据的编码。此外,由于系统的物理或化学不稳定性,存储数据的某些降解可能会发生。任何读出的策略都应考虑到这种自然的不确定性程度,并最大程度地减少其效果。一个示例是光学数字记忆,其中将信息编码为两个单元集合的反射率的两个值。已证明使用纠缠的量子读数可以增强理想的光学内存的读数,其中两个级别的表征是完美的。在这项工作中,我们将分析内存不完善的情况,并提出优化的量子传感协议,以最大程度地提高存在不精确写作的读数准确性。提出的策略对于当前技术是可行的,并且对于检测和光损失相对强大。除了光学记忆外,这项工作还对生物系统,分光光度法中的模式识别以及每当可以从传输/反射光学测量中提取信息时都具有影响。

The encoding of classical data in a physical support can be done up to some level of accuracy due to errors and the imperfection of the writing process. Moreover, some degradation of the storage data can happen over the time because of physical or chemical instability of the system. Any read-out strategy should take into account this natural degree of uncertainty and minimize its effect. An example are optical digital memories, where the information is encoded in two values of reflectance of a collection of cells. Quantum reading using entanglement, has been shown to enhances the readout of an ideal optical memory, where the two level are perfectly characterized. In this work, we will analyse the case of imperfect construction of the memory and propose an optimized quantum sensing protocol to maximize the readout accuracy in presence of imprecise writing. The proposed strategy is feasible with current technology and is relatively robust to detection and optical losses. Beside optical memories, this work have implications for identification of pattern in biological system, in spectrophotometry, and whenever the information can be extracted from a transmission/reflection optical measurement.

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