SQuADDS: A validated design database and simulation workflow for superconducting qubit design

Fuente: arXiv
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Autori principali: Shanto, Sadman, Kuo, Andre, Miyamoto, Clark, Zhang, Haimeng, Maurya, Vivek, Vlachos, Evangelos, Hecht, Malida, Shum, Chung Wa, Levenson-Falk, Eli
Natura: Preprint
Pubblicazione: 2023
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author Shanto, Sadman
Kuo, Andre
Miyamoto, Clark
Zhang, Haimeng
Maurya, Vivek
Vlachos, Evangelos
Hecht, Malida
Shum, Chung Wa
Levenson-Falk, Eli
author_facet Shanto, Sadman
Kuo, Andre
Miyamoto, Clark
Zhang, Haimeng
Maurya, Vivek
Vlachos, Evangelos
Hecht, Malida
Shum, Chung Wa
Levenson-Falk, Eli
contents We present an open-source database of superconducting quantum device designs that may be used as the starting point for customized devices. Each design can be generated programmatically using the open-source Qiskit Metal package, and simulated using finite-element electromagnetic solvers. We present a robust workflow for achieving high accuracy on design simulations. Many designs in the database are experimentally validated, showing excellent agreement between simulated and measured parameters. Our database includes a front-end interface that allows users to generate ``best-guess'' designs based on desired circuit parameters. This project lowers the barrier to entry for research groups seeking to make a new class of devices by providing them a well-characterized starting point from which to refine their designs.
format Preprint
id arxiv_https___arxiv_org_abs_2312_13483
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle SQuADDS: A validated design database and simulation workflow for superconducting qubit design
Shanto, Sadman
Kuo, Andre
Miyamoto, Clark
Zhang, Haimeng
Maurya, Vivek
Vlachos, Evangelos
Hecht, Malida
Shum, Chung Wa
Levenson-Falk, Eli
Quantum Physics
We present an open-source database of superconducting quantum device designs that may be used as the starting point for customized devices. Each design can be generated programmatically using the open-source Qiskit Metal package, and simulated using finite-element electromagnetic solvers. We present a robust workflow for achieving high accuracy on design simulations. Many designs in the database are experimentally validated, showing excellent agreement between simulated and measured parameters. Our database includes a front-end interface that allows users to generate ``best-guess'' designs based on desired circuit parameters. This project lowers the barrier to entry for research groups seeking to make a new class of devices by providing them a well-characterized starting point from which to refine their designs.
title SQuADDS: A validated design database and simulation workflow for superconducting qubit design
topic Quantum Physics
url https://arxiv.org/abs/2312.13483