Zugriffsnummer 28658
Dokumenttyp Zeitschriftenartikel
Sprache Englisch
Titel NbSi nanowire quantum-phase-slip circuits: DC supercurrent blockade, microwave measurements and thermal analysis
Autor(in); Institution
Webster, C. H.; National Physical Laboratory, Teddington, Middlesex, UK
Fenton, J. C.; National Physical Laboratory, Teddington, Middlesex, UK; University College, London Centre for Nanotechnology, London, UK
Hongisto, Terhi T.; 2.4, Quantenelektronik, PTB-Braunschweig
Giblin, S. P.; National Physical Laboratory, Teddington, Middlesex, UK
Zorin, Alexander B.; 2.4, Quantenelektronik, PTB-Braunschweig
Warburton, P. A.; University College, London Centre for Nanotechnology, London, UK
Quelle/Jahr Physical Review B: 87 (2013), 14, 144510-1 - 144510-12
ISSN 1098-0121 (PRINT)
DOI
URL
Verlag Ridge, NY: American Physical Society
Klassifikationscode PACS: 73.23.Hk ; PACS: 73.63.Nm ; PACS: 74.78.Na ; PACS: 85.25.Am
Zusammenfassung We present a detailed report of microwave irradiation of ultra-narrow superconducting nanowires. In our nanofabricated circuits containing a superconducting NbSi nanowire, a DC blockade of current flow was observed at low temperatures below a critical voltage Vc, a strong indicator of the existence of quantum phase-slip (QPS) in the nanowire. We describe the results of applying microwaves to these samples, using a range of frequencies and both continuous-wave and pulsed drive, in order to search for dual Shapiro steps which would constitute an unambiguous demonstration of quantum phase-slip. We observed no steps, and our subsequent thermal analysis suggests that the electron temperature in the series CrO resistors was significantly elevated above the substrate temperature, resulting in sufficient Johnson noise to wash out the steps. To understand the system and inform future work, we have constructed a numerical model of the dynamics of the circuit for DC and AC bias (both continuous wave and pulsed drive signals) in the presence of Johnson noise. Using this model, we outline important design considerations for device and measurement parameters which should be used in any future experiment to enable the observation of dual Shapiro steps at experimentally accessible temperatures and thus lead to the development of a QPS-based quantum current standard.

Zitierung

Webster, C. H., Fenton, J. C., Hongisto, T. T., Giblin, S. P., Zorin, A. B., & Warburton, P. A. (2013). NbSi nanowire quantum-phase-slip circuits: DC supercurrent blockade, microwave measurements and thermal analysis. Physical Review B, 87(14), 144510-1–144510-12. https://doi.org/10.1103/physrevb.87.144510

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