Publications (5)
Iterative assembly of Yb atom arrays with cavity-enhanced optical lattices
M. A. Norcia, H. Kim, W. B. Cairncross +47
Assembling and maintaining large arrays of individually addressable atoms is a key requirement for continued scaling of neutral-atom-based quantum computers and simulators. In this…
Mid-circuit qubit measurement and rearrangement in a Yb atomic array
M. A. Norcia, W. B. Cairncross, K. Barnes +42
Measurement-based quantum error correction relies on the ability to determine the state of a subset of qubits (ancillae) within a processor without revealing or disturbing the stat…
Repeated ancilla reuse for logical computation on a neutral atom quantum computer
J. A. Muniz, D. Crow, H. Kim +59
Quantum processors based on neutral atoms trapped in arrays of optical tweezers have appealing properties, including relatively easy qubit number scaling and the ability to enginee…
Continuous quantum error correction for evolution under time-dependent Hamiltonians
J. Atalaya, S. Zhang, M. Y. Niu +4
We develop a protocol for continuous operation of a quantum error correcting code for protection of coherent evolution due to an encoded Hamiltonian against environmental errors, u…
High-fidelity universal gates in the Yb ground state nuclear spin qubit
J. A. Muniz, M. Stone, D. T. Stack +50
Arrays of optically trapped neutral atoms are a promising architecture for the realization of quantum computers. In order to run increasingly complex algorithms, it is advantageous…