A π-shaped Quantum Device for Implementation of Bell States in Solid State Environment

Abstract

Electronic spin-qubit is key ingredient for quantum information processing in a solid state environment. We present a π-shaped two-qubit entanglement device capable of measuring the resultant states in Bell basis. In our device, source spins (s or s) are electrically generated and tunnelled to channel where they interact with channel spins (c or c) via exchange interaction which is responsible for 2-qubit entanglement. Electrical control over spins gives rise to the Bell states. The USWAP and CNOT gate operations are implemented through these Bell states for universal quantum computation. π-shaped quantum device can be used as a solid state interconnect between different parts of the circuit in integrated chips.

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