UNIVERSAL ADIABATIC QUANTUM COMPUTING WITH SUPERCONDUCTING QUBITS

    公开(公告)号:US20180314970A1

    公开(公告)日:2018-11-01

    申请号:US16029040

    申请日:2018-07-06

    CPC classification number: G06N99/002 G11C11/44 H03K3/38 H03K19/1952

    Abstract: A quantum processor is operable as a universal adiabatic quantum computing system. The quantum processor includes physical qubits, with at least a first and second communicative coupling available between pairs of qubits via an in-situ tunable superconducting capacitive coupler and an in-situ tunable superconducting inductive coupler, respectively. Tunable couplers provide diagonal and off-diagonal coupling. Compound Josephson junctions (CJJs) of the tunable couplers are responsive to a flux bias to tune a sign and magnitude of a sum of a capacitance of a fixed capacitor and a tunable capacitance which is mediated across a pair of coupling capacitors. The qubits may be hybrid qubits, operable in a flux regime or a charge regime. Qubits may include a pair of CJJs that interrupt a loop of material and which are separated by an island of superconducting material which is voltage biased with respect to a qubit body.

    UNIVERSAL ADIABATIC QUANTUM COMPUTING WITH SUPERCONDUCTING QUBITS
    3.
    发明申请
    UNIVERSAL ADIABATIC QUANTUM COMPUTING WITH SUPERCONDUCTING QUBITS 审中-公开
    具有超导功能的通用ADIABATIC量子计算机

    公开(公告)号:US20150111754A1

    公开(公告)日:2015-04-23

    申请号:US14520139

    申请日:2014-10-21

    CPC classification number: G06N99/002 G11C11/44 H03K3/38 H03K19/1952

    Abstract: A quantum processor is operable as a universal adiabatic quantum computing system. The quantum processor includes physical qubits, with at least a first and second communicative coupling available between pairs of qubits via an in-situ tunable superconducting capacitive coupler and an in-situ tunable superconducting inductive coupler, respectively. Tunable couplers provide diagonal and off-diagonal coupling. Compound Josephson junctions (CJJs) of the tunable couplers are responsive to a flux bias to tune a sign and magnitude of a sum of a capacitance of a fixed capacitor and a tunable capacitance which is mediated across a pair of coupling capacitors. The qubits may be hybrid qubits, operable in a flux regime or a charge regime. Qubits may include a pair of CJJs that interrupt a loop of material and which are separated by an island of superconducting material which is voltage biased with respect to a qubit body.

    Abstract translation: 量子处理器可用作通用绝热量子计算系统。 量子处理器包括物理量子位,其中至少第一和第二通信耦合分别通过原位可调谐超导电容耦合器和原位可调谐超导感应耦合器在成对的量子位之间可用。 可调谐耦合器提供对角线和非对角线耦合。 可调谐耦合器的复合约瑟夫逊结(CJJ)响应于通量偏置来调节固定电容器的电容和在一对耦合电容器之间介导的可调谐电容之和的符号和幅度。 量子位可以是混合量子位,可在通量状态或电荷状态下操作。 Qubits可以包括一对中断材料环的CJJ,它们被相对于量子位体电压偏置的超导材料岛隔开。

    Systems and methods for coupling qubits in a quantum processor

    公开(公告)号:US11494683B2

    公开(公告)日:2022-11-08

    申请号:US16955526

    申请日:2018-12-19

    Abstract: Josephson junctions (JJ) may replace primary inductance of transformers to realize galvanic coupling between qubits, advantageously reducing size. A long-range symmetric coupler may include a compound JJ (CJJ) positioned at least approximately at a half-way point along the coupler to advantageously provide a higher energy of a first excited state than that of an asymmetric long-range coupler. Quantum processors may include qubits and couplers with a non-stoquastic Hamiltonian to enhance multi-qubit tunneling during annealing. Qubits may include additional shunt capacitances, e.g., to increase overall quality of a total capacitance and improve quantum coherence. A sign and/or magnitude of an effective tunneling amplitude Δeff of a qubit characterized by a double-well potential energy may advantageously be tuned. Sign-tunable electrostatic coupling of qubits may be implemented, e.g., via resonators, and LC-circuits. YY couplings may be incorporated into a quantum anneaier (e.g., quantum processor).

    Universal adiabatic quantum computing with superconducting qubits

    公开(公告)号:US11348024B2

    公开(公告)日:2022-05-31

    申请号:US16029040

    申请日:2018-07-06

    Abstract: A quantum processor is operable as a universal adiabatic quantum computing system. The quantum processor includes physical qubits, with at least a first and second communicative coupling available between pairs of qubits via an in-situ tunable superconducting capacitive coupler and an in-situ tunable superconducting inductive coupler, respectively. Tunable couplers provide diagonal and off-diagonal coupling. Compound Josephson junctions (CJJs) of the tunable couplers are responsive to a flux bias to tune a sign and magnitude of a sum of a capacitance of a fixed capacitor and a tunable capacitance which is mediated across a pair of coupling capacitors. The qubits may be hybrid qubits, operable in a flux regime or a charge regime. Qubits may include a pair of CJJs that interrupt a loop of material and which are separated by an island of superconducting material which is voltage biased with respect to a qubit body.

    Universal adiabatic quantum computing with superconducting qubits

    公开(公告)号:US10037493B2

    公开(公告)日:2018-07-31

    申请号:US14520139

    申请日:2014-10-21

    CPC classification number: G06N10/00 G11C11/44 H03K3/38 H03K19/1952

    Abstract: A quantum processor is operable as a universal adiabatic quantum computing system. The quantum processor includes physical qubits, with at least a first and second communicative coupling available between pairs of qubits via an in-situ tunable superconducting capacitive coupler and an in-situ tunable superconducting inductive coupler, respectively. Tunable couplers provide diagonal and off-diagonal coupling. Compound Josephson junctions (CJJs) of the tunable couplers are responsive to a flux bias to tune a sign and magnitude of a sum of a capacitance of a fixed capacitor and a tunable capacitance which is mediated across a pair of coupling capacitors. The qubits may be hybrid qubits, operable in a flux regime or a charge regime. Qubits may include a pair of CJJs that interrupt a loop of material and which are separated by an island of superconducting material which is voltage biased with respect to a qubit body.

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