arXiv · 1410.3105
Quantum state tomography of orbital angular momentum photonics qubits via a projection-based technique
Abstract
While measuring the orbital angular momentum state of bright light beams can be performed using imaging techniques, a full characterization at the single-photon level is challenging. For applications to quantum optics and quantum information science, such characterization is an essential capability. Here, we present a setup to perform the quantum state tomography of photonic qubits encoded in this degree of freedom. The method is based on a projective technique using spatial mode projection via fork holograms and single-mode fibers inserted into an interferometer. The alignment and calibration of the device is detailed as well as the measurement sequence to reconstruct the associated density matrix. Possible extensions to higher-dimensional spaces are discussed.
Explore related subjects
Keep this discovery
Adrien Nicolas, Lucile Veissier, Elisabeth Giacobino, Dominik Maxein, Julien Laurat. 2014-10-12. Quantum state tomography of orbital angular momentum photonics qubits via a projection-based technique. https://doi.org/10.1088/1367-2630%2F17%2F3%2F033037
Cite the original work for its findings. Save a collection to share your selection of sources.