Experimental advances with the QICK (Quantum Instrumentation Control Kit) for superconducting quantum hardware
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arXiv
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| Autori principali: | , , , , , , , , , , , , , , , , |
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| Natura: | Preprint |
| Pubblicazione: |
2023
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| _version_ | 1866908645032198144 |
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| author | Ding, Chunyang Di Federico, Martin Hatridge, Michael Houck, Andrew Leger, Sebastien Martinez, Jeronimo Miao, Connie Schuster, David I. Stefanazzi, Leandro Stoughton, Chris Sussman, Sara Treptow, Ken Uemura, Sho Wilcer, Neal Zhang, Helin Zhou, Chao Cancelo, Gustavo |
| author_facet | Ding, Chunyang Di Federico, Martin Hatridge, Michael Houck, Andrew Leger, Sebastien Martinez, Jeronimo Miao, Connie Schuster, David I. Stefanazzi, Leandro Stoughton, Chris Sussman, Sara Treptow, Ken Uemura, Sho Wilcer, Neal Zhang, Helin Zhou, Chao Cancelo, Gustavo |
| contents | The QICK is a standalone open source qubit controller that was first introduced in 2022. In this follow-up work, we present recent experimental use cases that the QICK uniquely enabled for superconducting qubit systems. These include multiplexed signal generation and readout, mixer-free readout, pre-distorted fast flux pulses, and phase-coherent pulses for parametric operations, including high-fidelity parametric entangling gates. We explain in detail how the QICK was used to enable these experiments. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2311_17171 |
| institution | arXiv |
| publishDate | 2023 |
| record_format | arxiv |
| spellingShingle | Experimental advances with the QICK (Quantum Instrumentation Control Kit) for superconducting quantum hardware Ding, Chunyang Di Federico, Martin Hatridge, Michael Houck, Andrew Leger, Sebastien Martinez, Jeronimo Miao, Connie Schuster, David I. Stefanazzi, Leandro Stoughton, Chris Sussman, Sara Treptow, Ken Uemura, Sho Wilcer, Neal Zhang, Helin Zhou, Chao Cancelo, Gustavo Quantum Physics Instrumentation and Detectors The QICK is a standalone open source qubit controller that was first introduced in 2022. In this follow-up work, we present recent experimental use cases that the QICK uniquely enabled for superconducting qubit systems. These include multiplexed signal generation and readout, mixer-free readout, pre-distorted fast flux pulses, and phase-coherent pulses for parametric operations, including high-fidelity parametric entangling gates. We explain in detail how the QICK was used to enable these experiments. |
| title | Experimental advances with the QICK (Quantum Instrumentation Control Kit) for superconducting quantum hardware |
| topic | Quantum Physics Instrumentation and Detectors |
| url | https://arxiv.org/abs/2311.17171 |