Measurement and control of a superconducting quantum processor with a fully integrated radio-frequency system on a chip

被引:20
作者
Tholen, Mats O. [1 ,2 ]
Borgani, Riccardo [1 ,2 ]
Di Carlo, Giuseppe Ruggero [1 ]
Bengtsson, Andreas [3 ]
Krizan, Christian [3 ]
Kudra, Marina [3 ]
Tancredi, Giovanna [3 ]
Bylander, Jonas [3 ]
Delsing, Per [3 ]
Gasparinetti, Simone [3 ]
Haviland, David B. [1 ]
机构
[1] KTH Royal Inst Technol, Nanostruct Phys, S-10691 Stockholm, Sweden
[2] Intermodulat Prod AB, S-82393 Segersta, Sweden
[3] Chalmers Univ Technol, Dept Microtechnol & Nanosci, S-41296 Gothenburg, Sweden
关键词
OF-THE-ART;
D O I
10.1063/5.0101398
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
We describe a digital microwave platform called Presto, designed for measurement and control of multiple quantum bits (qubits) and based on the third-generation radio-frequency system on a chip. Presto uses direct digital synthesis to create signals up to 9 GHz on 16 synchronous output ports, while synchronously analyzing responses on 16 input ports. Presto has 16 DC-bias outputs, four inputs and four outputs for digital triggers or markers, and two continuous-wave outputs for synthesizing frequencies up to 15 GHz. Scaling to a large number of qubits is enabled through deterministic synchronization of multiple Presto units. A Python application programming interface configures a firmware for synthesis and analysis of pulses, coordinated by an event sequencer. The analysis integrates template matching (matched filtering) and low-latency (184-254 ns) feedback to enable a wide range of multi-qubit experiments. We demonstrate Presto's capabilities with experiments on a sample consisting of two superconducting qubits connected via a flux-tunable coupler. We show single-shot readout and active reset of a single qubit; randomized benchmarking of single-qubit gates showing 99.972% fidelity, limited by the coherence time of the qubit; and calibration of a two-qubit iSWAP gate.
引用
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页数:14
相关论文
共 43 条
[1]   Universal Fidelity Reduction of Quantum Operations from Weak Dissipation [J].
Abad, Tahereh ;
Fernandez-Pendas, Jorge ;
Kockum, Anton Frisk ;
Johansson, Goran .
PHYSICAL REVIEW LETTERS, 2022, 129 (15)
[2]   Squeezing and Multimode Entanglement of Surface Acoustic Wave Phonons [J].
Andersson, Gustav ;
Jolin, Shan W. ;
Scigliuzzo, Marco ;
Borgani, Riccardo ;
Tholen, Mats O. ;
Hernandez, J. C. Rivera ;
Shumeiko, Vitaly ;
Haviland, David B. ;
Delsing, Per .
PRX QUANTUM, 2022, 3 (01)
[3]   Independent, extensible control of same-frequency superconducting qubits by selective broadcasting [J].
Asaad, Serwan ;
Dickel, Christian ;
Langford, Nathan K. ;
Poletto, Stefano ;
Bruno, Alessandro ;
Rol, Michiel Adriaan ;
Deurloo, Duije ;
DiCarlo, Leonardo .
NPJ QUANTUM INFORMATION, 2016, 2
[4]   Superconducting Parametric Amplifiers: The State of the Art in Josephson Parametric Amplifiers [J].
Aumentado, Jose .
IEEE MICROWAVE MAGAZINE, 2020, 21 (08) :45-59
[5]   The role of master clock stability in quantum information processing [J].
Ball, Harrison ;
Oliver, William D. ;
Biercuk, Michael J. .
NPJ QUANTUM INFORMATION, 2016, 2
[6]   Improved Success Probability with Greater Circuit Depth for the Quantum Approximate Optimization Algorithm [J].
Bengtsson, Andreas ;
Vikstal, Pontus ;
Warren, Christopher ;
Svensson, Marika ;
Gu, Xiu ;
Kockum, Anton Frisk ;
Krantz, Philip ;
Krizan, Christian ;
Shiri, Daryoush ;
Svensson, Ida-Maria ;
Tancredi, Giovanna ;
Johansson, Goran ;
Delsing, Per ;
Ferrini, Giulia ;
Bylander, Jonas .
PHYSICAL REVIEW APPLIED, 2020, 14 (03)
[7]   Impact and trends in embedding field programmable gate arrays and microcontrollers in scientific instrumentation [J].
Carminati, M. ;
Scandurra, G. .
REVIEW OF SCIENTIFIC INSTRUMENTS, 2021, 92 (09)
[8]   Single photon detection of 1.5 THz radiation with the quantum capacitance detector [J].
Echternach, P. M. ;
Pepper, B. J. ;
Reck, T. ;
Bradford, C. M. .
NATURE ASTRONOMY, 2018, 2 (01) :90-97
[9]   Benchmarking the noise sensitivity of different parametric two-qubit gates in a single superconducting quantum computing platform [J].
Ganzhorn, M. ;
Salis, G. ;
Egger, D. J. ;
Fuhrer, A. ;
Mergenthaler, M. ;
Mueller, C. ;
Mueller, P. ;
Paredes, S. ;
Pechal, M. ;
Werninghaus, M. ;
Filipp, S. .
PHYSICAL REVIEW RESEARCH, 2020, 2 (03)
[10]  
Gebauer R, 2020, Arxiv, DOI arXiv:2004.07755