← all papers · overview

Long-distance entangling gates between quantum dot spins mediated by a superconducting resonator

Abstract

Recent experiments with silicon qubits demonstrated strong coupling of a microwave resonator to the spin of a single electron in a double quantum dot, opening up the possibility of long-range spin-spin interactions. We present our theoretical calculation of effective interactions between distant quantum dot spins coupled by a resonator, and propose a protocol for fast, high-fidelity two-qubit gates consistent with experimentally demonstrated capabilities. Our simulations show that, in the presence of noise, spin-spin entangling gates significantly outperform cavity-mediated gates on charge qubits.

Related papers

Ranked by semantic similarity — how closely each paper's abstract matches this one (100% = near-identical topic).