论文标题
观察具有无创弱测量的“量子柴郡猫”效应
Observing the "quantum Cheshire cat" effect with noninvasive weak measurement
论文作者
论文摘要
自然的常见概念之一通常是从经典系统的经验中得出的,它是与物质共存的属性。然而,在量子状态下,量子粒子本身及其物理特性可能处于空间分离中,称为量子柴郡猫效应。迄今为止,已经有几份有关观察量子cheshire猫效应的报告,但所有此类实验均基于一阶干涉仪和破坏性投影测量,从而允许由于测量引起的干扰以及基于经典波浪的琐碎解释而导致简单的解释。在这项工作中,我们报告了对量子柴郡猫效应的真实实验性观察,其最初提出的非侵入性弱量子测量值。弱测量探针的使用使我们能够识别单光子的位置和量子干涉仪中无形极化状态的位置。我们进一步阐明了量子柴郡猫效应的悖论,因为光子和极化状态的过渡幅度的量子干扰是从测量结果或弱值直接获得的。
One of the common conceptions of nature, typically derived from the experiences with classical systems, is that attributes of the matter coexist with the substance. In the quantum regime, however, the quantum particle itself and its physical property may be in spatial separation, known as the quantum Cheshire cat effect. While there have been several reports to date on the observation of the quantum Cheshire cat effect, all such experiments are based on first-order interferometry and destructive projection measurement, thus allowing simple interpretation due to measurement-induced disturbance and also subject to trivial interpretation based on classical waves. In this work, we report a genuine experimental observation of the quantum Cheshire cat effect with noninvasive weak quantum measurement as originally proposed. The use of the weak-measurement probe has allowed us to identify the location of the single-photon and that of the disembodied polarization state in a quantum interferometer. We furthermore elucidate the paradox of the quantum Cheshire cat effect as quantum interference of the transition amplitudes for the photon and the polarization state which are directly obtained from the measurement outcomes or the weak values.