The QICK (Quantum Instrumentation Control Kit): Readout and control for qubits and detectors

Author:

Stefanazzi Leandro1,Treptow Kenneth1,Wilcer Neal1,Stoughton Chris1ORCID,Bradford Collin1ORCID,Uemura Sho1ORCID,Zorzetti Silvia1,Montella Salvatore1,Cancelo Gustavo1ORCID,Sussman Sara2ORCID,Houck Andrew2,Saxena Shefali3ORCID,Arnaldi Horacio4ORCID,Agrawal Ankur5ORCID,Zhang Helin5,Ding Chunyang5,Schuster David I.5

Affiliation:

1. Fermi National Accelerator Laboratory 1 , Batavia, Illinois 60510, USA

2. Department of Physics and Department of Electrical Engineering, Princeton University 2 , Princeton, New Jersey 08544, USA

3. Argonne National Laboratory 3 , Lemont, Illinois 60439, USA

4. Instituto Balseiro 4 , Bariloche, RN 8402, Argentina

5. Department of Physics and Pritzker School of Molecular Engineering, University of Chicago 5 , Chicago, Illinois 60637, USA

Abstract

We introduce a Xilinx RF System-on-Chip (RFSoC)-based qubit controller (called the Quantum Instrumentation Control Kit, or QICK for short), which supports the direct synthesis of control pulses with carrier frequencies of up to 6 GHz. The QICK can control multiple qubits or other quantum devices. The QICK consists of a digital board hosting an RFSoC field-programmable gate array, custom firmware, and software and an optional companion custom-designed analog front-end board. We characterize the analog performance of the system as well as its digital latency, important for quantum error correction and feedback protocols. We benchmark the controller by performing standard characterizations of a transmon qubit. We achieve an average gate fidelity of Favg=99.93%. All of the schematics, firmware, and software are open-source.

Funder

U.S. Department of Energy

Division of Physics

U.S. Army

National Defense Science and Engineering Graduate

Heising-Simons Foundation

Publisher

AIP Publishing

Subject

Instrumentation

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