QUANTUM DESIGN AUTOMATION SYSTEM
개요
발명자
Dor Gabay; Daniel Lidar; Amir Yacoby; Izhar Medalsy
IPC 분류
CPC 분류
A quantum design automation (QDA) system provides developers means to ensure maximal performance, reliability, and enhancement of simulated qubit architectures or quantum circuits. The system generates performance metrics for qubit operations applied to a qubit architecture and optimizes control signals applied thereto to maximize the performance metrics. An OQS simulator determines the performance metrics of a user-prescribed effective Hamiltonian. A quantum control module iteratively runs the OQS simulator to optimize the control signals and maximize the performance metrics for a prescribed cost function. The effective Hamiltonian is defined by a system Hamiltonian describing the individual qubits, interaction Hamiltonian articulating the interactions of sets of qubits, a bath Hamiltonian describing any environmental noise sources, and a system-bath coupling Hamiltonian describing the interaction of the system with the bath. The system provides both software and hardware developers analysis and verification tools to refine system designs and quantum circuits on selected qubit architectures.
원문 (중국어)
A quantum design automation (QDA) system provides developers means to ensure maximal performance, reliability, and enhancement of simulated qubit architectures or quantum circuits. The system generates performance metrics for qubit operations applied to a qubit architecture and optimizes control signals applied thereto to maximize the performance metrics. An OQS simulator determines the performance metrics of a user-prescribed effective Hamiltonian. A quantum control module iteratively runs the OQS simulator to optimize the control signals and maximize the performance metrics for a prescribed cost function. The effective Hamiltonian is defined by a system Hamiltonian describing the individual qubits, interaction Hamiltonian articulating the interactions of sets of qubits, a bath Hamiltonian describing any environmental noise sources, and a system-bath coupling Hamiltonian describing the interaction of the system with the bath. The system provides both software and hardware developers analysis and verification tools to refine system designs and quantum circuits on selected qubit architectures.