From the 1 of 6 linked papers with an AI index.
6 papers
All-electrical Coherent Control of a Single Rare-earth Spin Qubit
Yaowu Liu, Dasom Choi, Stefano Reale +8
Electrical control of single spin qubits is a major frontier for nanoscale, high-speed, and scalable quantum devices. Yet, extending it to highly shielded rare-earth 4f electrons r…
Coherent electric field manipulation of nuclear spin qudit
Sumin Lim, Mikhail V. Vaganov, Niccolo Fontana +2
The authors demonstrate coherent electric-field manipulation of an I=5/2 nuclear spin qudit in Mn2+-doped ZnO, using hyperfine-coupled electron spins to achieve resonant and non‑re…
Electric-field Quantum Sensing Exploiting a Photogenerated Charge-transfer Triplet State in a Molecular Semiconductor
Niccolò Fontana, Mikhail V. Vaganov, Gabriel Moise +4
Molecular spin systems are promising platforms for quantum sensing due to their chemically tunable Hamiltonians, enabling tailored coherence properties and interactions with extern…
Programmable self-assembly for scalable molecular electronic architectures
Seham Helmi, Junjie Liu, Keith G Andrews +5
Molecular electronics and other technologies whose components comprise individual molecules have been pursued for half a century because the molecular scale represents the limit of…
Designing quantum error correction codes for practical spin qudit
Sumin Lim, Arzhang Ardavan
The implementation of practical error correction protocols is essential for deployment of quantum information technologies. Ways of exploiting high-spin nuclei, which have multi-le…
Demonstrating experimentally the encoding and dynamics of an error-correctable logical qubit on a hyperfine-coupled nuclear spin qudit
Sumin Lim, Mikhail V. Vaganov, Junjie Liu +1
The realization of effective quantum error correction protocols remains a central challenge in the development of scalable quantum computers. Employing high-dimensional quantum sys…