Fast Fingerprinting of Cloud-based NISQ Quantum Computers

被引:2
|
作者
Smith, Kaitlin N. [1 ]
Viszlai, Joshua [2 ]
Seifert, Lennart Maximilian [2 ]
Baker, Jonathan M. [3 ]
Szefer, Jakub [4 ]
Chong, Frederic T. [1 ,2 ]
机构
[1] Infleqtion, Supertech Div, Louisville, KY 80027 USA
[2] Univ Chicago, Dept Comp Sci, Chicago, IL USA
[3] Duke Univ, Duke Quantum Ctr, Durham, NC USA
[4] Yale Univ, Dept Elect Engn, New Haven, CT USA
来源
2023 IEEE INTERNATIONAL SYMPOSIUM ON HARDWARE ORIENTED SECURITY AND TRUST, HOST | 2023年
关键词
ERROR-CORRECTION; SUPERCONDUCTING QUBITS;
D O I
10.1109/HOST55118.2023.10133778
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Cloud-based quantum computers have become a reality with a number of companies allowing for cloud-based access to their machines with tens to more than 100 qubits. With easy access to quantum computers, quantum information processing will potentially revolutionize computation, and superconducting transmon-based quantum computers are among some of the more promising devices available. Cloud service providers today host a variety of these and other prototype quantum computers with highly diverse device properties, sizes, and performances. The variation that exists in today's quantum computers, even among those of the same underlying hardware, motivate the study of how one device can be clearly differentiated and identified from the next. As a case study, this work focuses on the properties of 25 IBM superconducting, fixed-frequency transmon-based quantum computers that range in age from a few months to approximately 2.5 years. Through the analysis of current and historical quantum computer calibration data, this work uncovers key features within the machines, primarily frequency characteristics of transmon qubits, that can serve as a basis for a unique hardware fingerprint of each quantum computer.
引用
收藏
页码:271 / 282
页数:12
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