量子器件建模的QCAD框架

X. Gao, E. Nielsen, R. Muller, R. Young, A. Salinger, N. Bishop, M. Carroll
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引用次数: 9

摘要

我们提出了量子计算机辅助设计(QCAD)模拟器,目标是模拟量子器件,特别是为量子计算开发的Si双量子点(DQDs)。模拟器核心包括泊松、薛定谔和配置交互求解器,它们可以单独运行,也可以自一致地组合在一起。该模拟器建立在sandia开发的Trilinos和Albany组件上,并与Dakota优化工具接口。它是为无缝集成、高灵活性和吞吐量而开发的,并且是开源的。QCAD工具已被用于模拟大量的硅dqd,并为设计比较和优化提供了快速反馈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The QCAD framework for quantum device modeling
We present the Quantum Computer Aided Design (QCAD) simulator that targets modeling quantum devices, particularly Si double quantum dots (DQDs) developed for quantum computing. The simulator core includes Poisson, Schrodinger, and Configuration Interaction solvers which can be run individually or combined self-consistently. The simulator is built upon Sandia-developed Trilinos and Albany components, and is interfaced with the Dakota optimization tool. It is being developed for seamless integration, high flexibility and throughput, and is intended to be open source. The QCAD tool has been used to simulate a large number of fabricated silicon DQDs and has provided fast feedback for design comparison and optimization.
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