DOE OSTI · 1980730
Probing topological spin liquids on a programmable quantum simulator
Abstract
Synthesizing topological order Topologically ordered matter exhibits long-range quantum entanglement. However, measuring this entanglement in real materials is extremely tricky. Now, two groups take a different approach and turn to synthetic systems to engineer the topological order of the so-called toric code type (see the Perspective by Bartlett). Satzinger et al . used a quantum processor to study the ground state and excitations of the toric code. Semeghini et al . detected signatures of a toric code–type quantum spin liquid in a two-dimensional array of Rydberg atoms held in optical tweezers. —JS
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Semeghini, G., Levine, H., Keesling, A., Ebadi, S., Wang, T. T., Bluvstein, D., Verresen, R., Pichler, H., Kalinowski, M., Samajdar, R., Omran, A., Sachdev, S., Vishwanath, A., Greiner, M., Vuletić, V., Lukin, M. D.. 2021-12-03. Probing topological spin liquids on a programmable quantum simulator. https://doi.org/10.1126/science.abi8794
Cite the original work for its findings. Save a collection to share your selection of sources.