Institute for Quantum Optics and Quantum Information-Vienna (IQOQI), Austrian Academy of Sciences, Boltzmanngasse 3, Vienna A-1090, Austria.
Faculty of Physics, University of Vienna, Boltzmanngasse 5, Vienna A-1090, Austria.
Nat Commun. 2017 May 10;8:15304. doi: 10.1038/ncomms15304.
The unification of the theory of relativity and quantum mechanics is a long-standing challenge in contemporary physics. Experimental techniques in quantum optics have only recently reached the maturity required for the investigation of quantum systems under the influence of non-inertial motion, such as being held at rest in gravitational fields, or subjected to uniform accelerations. Here, we report on experiments in which a genuine quantum state of an entangled photon pair is exposed to a series of different accelerations. We measure an entanglement witness for g-values ranging from 30 mg to up to 30 g-under free-fall as well on a spinning centrifuge-and have thus derived an upper bound on the effects of uniform acceleration on photonic entanglement.
相对论和量子力学的统一是当代物理学的一个长期挑战。量子光学的实验技术直到最近才达到研究非惯性运动影响下的量子系统的成熟度,例如在引力场中保持静止或受到均匀加速度的影响。在这里,我们报告了一系列实验,其中一对纠缠光子的真实量子态暴露在不同的加速度下。我们测量了从 30mg 到 30g 的 g 值范围内的纠缠见证,以及在自由落体和旋转离心机上的测量结果,从而得出了均匀加速度对光子纠缠影响的上限。