5 papers
Qutrit-Native Spatial-Orbital Encoding for Resource-Efficient Quantum Chemistry Simulation
Sumin Lim
Additional levels in a qudit can serve as more than extra computational capacity and can represent physically relevant correlations when the algorithmic design reflects the underly…
Coherent electric field manipulation of nuclear spin qudit
Sumin Lim, Mikhail V. Vaganov, Niccolo Fontana +2
Spins in condensed matter, especially well-isolated nuclear spins, offer attractive quantum degrees of freedom for computing, sensing, and networking because of their long coherenc…
Fault-Tolerant Encoding of Logical Qudits in Spin Systems
Sumin Lim
Universal quantum computers require fault-tolerant logical qudits, as qudits naturally align with the simulation of multi-level physical systems. Here, we present a general framewo…
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…