A spin qubit encodes information in the spin orientation of a single electron or atomic nucleus, confined to a tiny region of a semiconductor (most often silicon) called a quantum dot. Because the fabrication process borrows heavily from the existing semiconductor industry, spin qubits are physically small, roughly a thousand times smaller than a superconducting transmon, which makes this modality attractive for eventually packing large qubit counts onto a single chip using tooling the chip industry already has. The tradeoff has historically been control: reading out and coupling spin qubits with high fidelity took longer to solve than for superconducting or trapped-ion qubits, though progress from groups including Intel, Diraq, and HRL Laboratories (acquired by IBM in 2026 specifically for its silicon spin-qubit engineering) has been closing that gap. Coherence times for isotopically purified silicon spin qubits can exceed those of superconducting qubits by orders of magnitude.
Related Terms
QPU
HardwareQuantum Processing Unit: the physical hardware chip that executes quantum circuits.
Decoherence
HardwareThe loss of quantum properties when a qubit interacts with its environment.
T1 / T2 Time
HardwareT1 is the qubit energy relaxation time; T2 is the coherence (dephasing) time. Both limit circuit duration.