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SYSTEMS AND METHODS FOR COUPLING QUBITS IN A QUANTUM PROCESSOR

机译:用于耦合量子处理器中的量子位的系统和方法

摘要

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 muiti-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).
机译:约瑟夫逊结(JJ)可以代替变压器的初级电感,以实现量子位之间的电流耦合,从而有利地减小尺寸。长距离对称耦合器可包括至少大约沿着耦合器位于中点的化合物JJ(CJJ),以有利地提供比非对称长距离耦合器更高的第一激发态能量。量子处理器可包括具有非随机哈密顿量的量子位和耦合器,以增强退火期间的多量子位隧穿。量子位可以包括附加的并联电容,例如以增加总电容的整体质量并改善量子相干性。可以有利地调谐以双阱势能为特征的量子比特的有效隧穿幅度Δ eff 的符号和/或大小。可以例如通过谐振器和LC电路来实现量子位的符号可调的静电耦合。 YY耦合可以合并到量子退火器(例如,量子处理器)中。

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