arXiv · 1705.02489
Spectral properties of single photons from quantum emitters
Abstract
Quantum networks require flying qubits that transfer information between the nodes. This may be implemented by means of single atoms (the nodes) that emit and absorb single photons (the flying qubits) and requires full control of photon absorption and emission by the individual emitters. In this work, we theoretically characterize the wave packet of a photon emitted by a single atom undergoing a spontaneous Raman transition in a three-level scheme. We investigate several excitation schemes that are experimentally relevant and discuss control parameters that allow one to tailor the spectrum of the emitted photon wave packet.
Explore related subjects
Keep this discovery
Philipp Müller, Tristan Tentrup, Marc Bienert, Giovanna Morigi, Jürgen Eschner. 2017-09-19. Spectral properties of single photons from quantum emitters. https://doi.org/10.1103/physreva.96.023861
Cite the original work for its findings. Save a collection to share your selection of sources.