Quantum gates using a pulsed bias scheme
P. K. Gagnebin, S.R. Skinner, Elizabeth Behrman, James E. Steck, Zhongyuan Zhou, Siyuan Han
Abstract
P. K. Gagnebin, S.R. Skinner, Elizabeth Behrman, James E. Steck, Zhongyuan Zhou, Siyuan Han
Abstract
We propose a scheme for realizing quantum gates [controlled-NOT (CNOT) and Toffoli] using a two-level quantum system by means of a pulsed bias. We show how to realize a CNOT gate using a two-qubit, two-level coupled system and a Toffoli gate using a three-qubit, two-level coupled system. For the CNOT gate, we show how to reduce the $4\ifmmode\times\else\texttimes\fi{}4$ Hamiltonian of the coupled system to a $2\ifmmode\times\else\texttimes\fi{}2$ Hamiltonian in order to solve for parameter values of the system. When these values are substituted into the coupled system equations for the two-qubit system, the simulation results confirm the CNOT gate operation. We further demonstrate our proposed scheme for a CNOT gate operation using a multilevel system of two coupled superconducting quantum interference devices as a particular example. We next use the same approach to implement a Toffoli gate using a three-qubit system.
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We propose a scheme for realizing quantum gates [controlled-NOT (CNOT) and Toffoli] using a two-level quantum system by means of a pulsed bias. We show how to realize a CNOT gate using a two-qubit, two-level coupled system and a Toffoli gate using a three-qubit, two-level coupled system. For the CNOT gate, we show how to reduce the $4\ifmmode\times\else\texttimes\fi{}4$ Hamiltonian of the coupled system to a $2\ifmmode\times\else\texttimes\fi{}2$ Hamiltonian in order to solve for parameter values of the system. When these values are substituted into the coupled system equations for the two-qubit system, the simulation results confirm the CNOT gate operation. We further demonstrate our proposed scheme for a CNOT gate operation using a multilevel system of two coupled superconducting quantum interference devices as a particular example. We next use the same approach to implement a Toffoli gate using a three-qubit system.
Key concepts: Controlled NOT gate, Toffoli gate, Physics, Quantum gate, Quantum circuit, Qubit, Quantum mechanics, Topology (electrical circuits)