# Quantum computation with quantum dots > We propose an implementation of a universal set of one- and two-quantum-bit gates for quantum computation using the spin states of coupled single-electron quantum dots. Desired operations are effected by the gating of the tunneling barrier between neighboring dots. Several measures of the gate quali... ## Metadata - Authors: Daniel Loss, David P. DiVincenzo - Journal: Physical Review A - Published: 1998-01-01 - DOI: https://doi.org/10.1103/physreva.57.120 - Citations: 6,837 - Source: OpenAlex - Access: Open Access ## Technology Hub - Hub: Quantum Computing - Discipline: Physics / Computer Science - Hub URL: https://science-database.com/technology/quantum-computing - Hub llms.txt: https://science-database.com/technology/quantum-computing/llms.txt ## Abstract We propose an implementation of a universal set of one- and two-quantum-bit gates for quantum computation using the spin states of coupled single-electron quantum dots. Desired operations are effected by the gating of the tunneling barrier between neighboring dots. Several measures of the gate quality are computed within a recently derived spin master equation incorporating decoherence caused by a prototypical magnetic environment. Dot-array experiments that would provide an initial demonstration of the desired nonequilibrium spin dynamics are proposed. ## Links - DOI: https://doi.org/10.1103/physreva.57.120 - OpenAlex: https://openalex.org/W2103282498 - PDF: http://link.aps.org/pdf/10.1103/PhysRevA.57.120 - JSON API: https://science-database.com/api/v1/technology/quantum-computing --- Generated by science-database.com — The Knowledge Interface Paper ID: oa-W2103282498 | Hub: quantum-computing