A Review of Design Concerns in Superconducting Quantum Circuits

Type: Review

Publication Date: 2024-11-25

Citations: 0

DOI: https://doi.org/10.48550/arxiv.2411.16967

Abstract

In this short review we describe the process of designing a superconducting circuit device for quantum information applications. We discuss the factors that must be considered to implement a desired effective Hamiltonian on a device. We describe the translation between a device's physical layout, the circuit graph, and the effective Hamiltonian. We go over the process of electromagnetic simulation of a device layout to predict its behavior. We also discuss concerns such as connectivity, crosstalk suppression, and radiation shielding, and how they affect both on-chip design and enclosure structures. This paper provides an overview of the challenges in superconducting quantum circuit design and acts as a starter document for researchers working on any of these challenges.

Locations

  • arXiv (Cornell University) - View - PDF

Similar Works

Action Title Year Authors
+ PDF Chat Superconducting Circuit Companion—an Introduction with Worked Examples 2021 S. E. Rasmussen
Kim Christensen
Simon Panyella Pedersen
Lasse BjĂžrn Kristensen
T. BĂŠkkegaard
N. J. S. Loft
N. T. Zinner
+ SQuADDS: A validated design database and simulation workflow for superconducting qubit design 2024 Sadman Shanto
Andre Kuo
Clark Miyamoto
Haimeng Zhang
Vivek Maurya
Evangelos Vlachos
Malida Hecht
Chung Wa Shum
Eli Levenson-Falk
+ SQuADDS: A validated design database and simulation workflow for superconducting qubit design 2023 Sadman Shanto
Andre Kuo
Clark Miyamoto
Haimeng Zhang
Vivek Maurya
Evangelos Vlachos
Malida Hecht
Chung Wa Shum
Eli Levenson-Falk
+ Using inductive Energy Participation Ratio for Superconducting Quantum Chip Characterization 2023 Ke-Hui Yu
Yuan-Hao Fu
Xiao-Yang Jiao
Li-Jing Jin
+ PDF Chat Qplacer: Frequency-Aware Component Placement for Superconducting Quantum Computers 2024 Junyao Zhang
Hanrui Wang
Qi Ding
Jiaqi Gu
RĂ©ouven Assouly
William D. Oliver
Song Han
Kenneth R. Brown
Hao Li
Yiran Chen
+ PDF Chat Analysis of Superconducting Qubit Layouts Using InductEx 2023 Sean Crowe
B. J. Taylor
Nicholas Ferrante
Brad Liu
Susan Berggren
+ PDF Chat A quantum engineer's guide to superconducting qubits 2019 Philip Krantz
Morten KjĂŠrgaard
Fei Yan
Terry P. Orlando
Simon Gustavsson
William D. Oliver
+ PDF Chat Modeling Enclosures for Large-Scale Superconducting Quantum Circuits 2020 Peter Spring
Takahiro Tsunoda
Brian Vlastakis
Peter Leek
+ Analysis of Superconducting Qubit Layouts Using InductEx 2023 Sean Crowe
B. J. Taylor
Nicholas Ferrante
Brad Liu
Susan Berggren
+ PDF Chat Using the inductive-energy participation ratio to characterize a superconducting quantum chip 2024 Ke-Hui Yu
Xiao-Yang Jiao
Li-Jing Jin
+ PDF Chat Quantum chip design optimization and automation in superconducting coupler architecture 2023 Fei-Yu Li
Li-Jing Jin
+ PDF Chat qGDP: Quantum Legalization and Detailed Placement for Superconducting Quantum Computers 2024 Junyao Zhang
G.-S. Zhou
Feng Cheng
Jonathan Ku
Qi Ding
Jiaqi Gu
Hanrui Wang
Hao Li
Yiran Chen
+ Quantum Computing Circuits and Devices 2018 Travis S. Humble
Himanshu Thapliyal
Edgard Muñoz‐Coreas
Fahd A. Mohiyaddin
Ryan S. Bennink
+ Quantum Computing Circuits and Devices 2018 Travis S. Humble
Himanshu Thapliyal
Edgard Muñoz‐Coreas
Fahd A. Mohiyaddin
Ryan S. Bennink
+ PDF Chat Practical Guide for Building Superconducting Quantum Devices 2021 Yvonne Y. Gao
M. A. Rol
Steven Touzard
Chen Wang
+ PDF Chat A General Framework for Gradient-Based Optimization of Superconducting Quantum Circuits using Qubit Discovery as a Case Study 2024 Taha Rajabzadeh
Alex Boulton-McKeehan
Sam Bonkowsky
David I. Schuster
Amir H. Safavi-Naeini
+ PDF Chat Microwave Packaging for Superconducting Qubits 2019 Benjamin Lienhard
Jochen BraumĂŒller
Wayne Woods
Danna Rosenberg
Greg Calusine
Steven Weber
Antti VepsÀlÀinen
Kevin O’Brien
Terry P. Orlando
Simon Gustavsson
+ PDF Chat Improving the accuracy of circuit quantization using the electromagnetic properties of superconductors 2024 Seong Hyeon Park
Gahyun Choi
Eunjong Kim
Gwanyeol Park
Jisoo Choi
Jiman Choi
Yonuk Chong
Yongho Lee
Seungyong Hahn
+ PDF Chat The upside of noise: engineered dissipation as a resource in superconducting circuits 2017 Eliot Kapit
+ Quantum Chip Design Automation in Superconducting Coupler Architecture 2022 Fei-Yu Li
Li-Jing Jin

Works That Cite This (0)

Action Title Year Authors

Works Cited by This (0)

Action Title Year Authors