arXiv · 1109.0440
Heralded quantum entanglement between two crystals
Abstract
Quantum networks require the crucial ability to entangle quantum nodes. A prominent example is the quantum repeater which allows overcoming the distance barrier of direct transmission of single photons, provided remote quantum memories can be entangled in a heralded fashion. Here we report the observation of heralded entanglement between two ensembles of rare-earth-ions doped into separate crystals. A heralded single photon is sent through a 50/50 beamsplitter, creating a single-photon entangled state delocalized between two spatial modes. The quantum state of each mode is subsequently mapped onto a crystal, leading to an entangled state consisting of a single collective excitation delocalized between two crystals. This entanglement is revealed by mapping it back to optical modes and by estimating the concurrence of the retrieved light state. Our results highlight the potential of rare-earth-ions doped crystals for entangled quantum nodes and bring quantum networks based on solid-state resources one step closer.
Explore related subjects
Keep this discovery
Imam Usmani, Christoph Clausen, Felix Bussieres, Nicolas Sangouard, Mikael Afzelius, Nicolas Gisin. 2011-09-02. Heralded quantum entanglement between two crystals. https://doi.org/10.1038/nphoton.2012.34
Cite the original work for its findings. Save a collection to share your selection of sources.