Nagali E, Sciarrino F, De Martini F, Piccirillo B, Karimi E, Marrucci L, Santamato E
Dipartimento di Fisica dell'Università La Sapienza and Consorzio Nazionale Interuniversitario per le Scienze Fisiche della Materia, Roma 00185, Italy.
Opt Express. 2009 Oct 12;17(21):18745-59. doi: 10.1364/OE.17.018745.
The orbital angular momentum of photons, being defined in an infinite-dimensional discrete Hilbert space, offers a promising resource for high-dimensional quantum information protocols in quantum optics. The biggest obstacle to its wider use is presently represented by the limited set of tools available for its control and manipulation. Here, we introduce and test experimentally a series of simple optical schemes for the coherent transfer of quantum information from the polarization to the orbital angular momentum of single photons and vice versa. All our schemes exploit a newly developed optical device, the so-called "q-plate", which enables the manipulation of the photon orbital angular momentum driven by the polarization degree of freedom. By stacking several q-plates in a suitable sequence, one can also have access to higher-order angular momentum subspaces. In particular, we demonstrate the control of the orbital angular momentum m degree of freedom within the subspaces of |m| = 2h and |m| = 4h per photon.
光子的轨道角动量定义在无限维离散希尔伯特空间中,为量子光学中的高维量子信息协议提供了一种很有前景的资源。目前,其更广泛应用的最大障碍是可用于控制和操纵它的工具有限。在此,我们介绍并通过实验测试了一系列简单的光学方案,用于将量子信息从单光子的偏振相干转移到其轨道角动量,反之亦然。我们所有的方案都利用了一种新开发的光学器件,即所谓的“q板”,它能够通过偏振自由度来操纵光子的轨道角动量。通过以合适的顺序堆叠多个q板,还可以进入高阶角动量子空间。特别是,我们展示了在每个光子的|m| = 2ħ和|m| = 4ħ子空间内对轨道角动量m自由度的控制。