Josephson arbitrary waveform synthesizer for ac voltage calibration, CPEM 2022
Data e Risorse
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Figure 2CSV
Fig. 2. QLR (2 V rms waveforms) as a function of the compensation current...
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Figure 1CSV
Fig. 1. QLR (2 V rms waveforms) as a function of the dc bias current offset...
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Figure 3CSV
Fig. 3. QLR (2 V rms waveform) as a function of the pulse amplitude on Bias 1...
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Figure 4CSV
Fig. 4. QLR (2 V rms waveforms) as a function of the compensation current...
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ReadmeTEXT
2682_README.txt
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| catalog_describedBy | https://project-open-data.cio.gov/v1.1/schema/catalog.json |
| identifier | ark:/88434/mds2-2682 |
| issued | 2022-07-20 |
| language | {en} |
| license | https://www.nist.gov/open/license |
| modified | 2022-06-14 00:00:00 |
| programCode | {006:045} |
| publisher | National Institute of Standards and Technology |
| resource-type | Dataset |
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| license_id | other-license-specified |
| license_title | other-license-specified |
| maintainer | Alain Rufenacht |
| maintainer_email | alain.rufenacht@nist.gov |
| metadata_created | 2025-11-21T11:09:48.902196 |
| metadata_modified | 2025-11-21T11:09:48.902199 |
| notes | This is the dataset for 4 publishable figures in 2 page abstracted titled "Josephson arbitrary waveform synthesizer for ac voltage calibrations" submitted to the Conference on Precision Electromagnetic Measurements, CPEM 2022. QLR=Quantum Locking Range.Fig. 1. QLR (2 V rms waveforms) as a function of the dc bias current offset in all 4 arrays of Bias 1.Fig. 2. QLR (2 V rms waveforms) as a function of the compensation current amplitude in all 4 arrays of Bias 1.Fig. 3. QLR (2 V rms waveform) as a function of the pulse amplitude on Bias 1 or Bias 2 high-speed current pulse channel.Fig. 4. QLR (2 V rms waveforms) as a function of the compensation current phase in all 4 arrays of Bias 1. |
| num_resources | 5 |
| num_tags | 15 |
| title | Josephson arbitrary waveform synthesizer for ac voltage calibration, CPEM 2022 |