arXiv · 2009.02851
One-photon measurement of two-photon entanglement
Abstract
Entanglement is a fundamental feature of quantum mechanics, considered a key resource in quantum information processing. Measuring entanglement is an essential step in a wide range of applied and foundational quantum experiments. When a two-particle quantum state is not pure, standard methods to measure the entanglement require detection of both particles. We introduce a method in which detection of only one of the particles is required to characterize the entanglement of a two-particle mixed state. Our method is based on the principle of quantum interference. We use two identical sources of a two-photon mixed state and generate a set of single-photon interference patterns. The entanglement of the two-photon quantum state is characterized by the visibility of the interference patterns. Our experiment thus opens up a distinct avenue for verifying and measuring entanglement, and can allow for mixed state entanglement characterization even when one particle in the pair cannot be detected.
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Gabriela Barreto Lemos, Radek Lapkiewicz, Armin Hochrainer, Mayukh Lahiri, Anton Zeilinger. 2020-09-07. One-photon measurement of two-photon entanglement. https://doi.org/10.1103/physrevlett.130.090202
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