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US Patent 10483980 Parametrically activated quantum logic gates

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Contents

Is a
Patent
Patent

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10483980
Patent Inventor Names
Sabrina Sae Byul Hong0
Alexander Papageorge0
Chad Tyler Rigetti0
Colm Andrew Ryan0
Deanna Margo Abrams0
Eyob A. Sete0
Marcus Palmer da Silva0
Matthew J. Reagor0
...
Date of Patent
November 19, 2019
Patent Application Number
16012551
Date Filed
June 19, 2018
Patent Citations
‌
US Patent 10056908 Operating a coupler device to perform quantum logic gates
Patent Citations Received
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US Patent 11990905 Parametrically activated quantum logic gates
0
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US Patent 10793431 Semiconductor controlled quantum annealing interaction gate
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US Patent 11366345 Semiconductor controlled quantum Pauli interaction gate
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US Patent 11423322 Integrated quantum computer incorporating quantum core and associated classical control circuitry
0
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US Patent 11450760 Quantum structures using aperture channel tunneling through depletion region
0
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US Patent 10800654 Semiconductor controlled quantum swap interaction gate
0
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US Patent 10822231 Semiconductor controlled quantum ancillary interaction gate
0
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US Patent 10833652 Superconducting resonator definition based on one or more attributes of a superconducting circuit
...
Patent Primary Examiner
‌
Alexander H Taningco
Patent abstract

In a general aspect, a quantum logic gate is performed in a quantum computing system. In some cases, a pair of qubits are defined in a quantum processor; the pair of qubits can include a first qubit defined by a first qubit device in the quantum processor and a second qubit defined by a tunable qubit device in the quantum processor. A quantum logic gate can be applied to the pair of qubits by communicating a control signal to a control line coupled to the tunable qubit device. The control signal can be configured to modulate a transition frequency of the tunable qubit device at a modulation frequency, and the modulation frequency can be determined based on a transition frequency of the first qubit device.

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