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Local mapping of detector response for reliable quantum state estimation

机译:探测器响应的局部映射,用于可靠的量子态估计

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摘要

Improved measurement techniques are central to technological development and foundational scientific exploration. Quantum physics relies on detectors sensitive to non-classical features of systems, enabling precise tests of physical laws and quantum-enhanced technologies including precision measurement and secure communications. Accurate detector response calibration for quantum-scale inputs is key to future research and development in these cognate areas. To address this requirement, quantum detector tomography has been recently introduced. However, this technique becomes increasingly challenging as the complexity of the detector response and input space grow in a number of measurement outcomes and required probe states, leading to further demands on experiments and data analysis. Here we present an experimental implementation of a versatile, alternative characterization technique to address many-outcome quantum detectors that limits the input calibration region and does not involve numerical post processing. To demonstrate the applicability of this approach, the calibrated detector is subsequently used to estimate non-classical photon number states.
机译:改进的测量技术对于技术发展和基础科学探索至关重要。量子物理学依赖对系统非经典特征敏感的探测器,从而能够对物理定律和量子增强技术进行精确测试,包括精确测量和安全通信。量子级输入的准确检测器响应校准对于这些同类领域的未来研究和开发至关重要。为了满足该要求,最近已经引入了量子检测器层析成像。然而,随着检测器响应和输入空间的复杂性在许多测量结果和所需的探针状态中增长,该技术变得越来越具有挑战性,从而导致对实验和数据分析的进一步需求。在这里,我们介绍了一种通用的替代性表征技术的实验实现,以解决限制输入校准区域且不涉及数字后处理的多种结果量子检测器。为了证明这种方法的适用性,随后将经过校准的检测器用于估计非经典光子数状态。

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