Matthias Steffen, Lieven M. K. Vandersypen, et al.
IEEE Micro
Demonstration of quantum entanglement, a key resource in quantum computation arising from a nonclassical correlation of states, requires complete measurement of all states in varying bases. By using simultaneous measurement and state tomography, we demonstrated entanglement between two solid-state qubits. Single qubit operations and capacitive coupling between two super-conducting phase qubits were used to generate a Bell-type state. Full two-qubit tomography yielded a density matrix showing an entangled state with fidelity up to 87%. Our results demonstrate a high degree of unitary control of the system, indicating that larger implementations are within reach.
Matthias Steffen, Lieven M. K. Vandersypen, et al.
IEEE Micro
M A Mueed, Slavko Rebec, et al.
APS March Meeting 2022
Frederico Brito, David P. Di Vincenzo, et al.
New Journal of Physics
Lieven M. K. Vandersypen, Matthias Steffen, et al.
Physical Review Letters