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ac Josephson effect in a gate-tunable Cd3As2 nanowire superconducting weak link

Title
ac Josephson effect in a gate-tunable Cd3As2 nanowire superconducting weak link
Author(s)
Haller, RoyOsterwalder, M.Fülöp, GergőRidderbos, JoostJung, MinkyungSchönenberger, C.
Issued Date
2023-09
Citation
Physical Review B, v.108, no.9
Type
Article
ISSN
2469-9950
Abstract
Three-dimensional topological Dirac semimetals have recently attracted significant attention since they possess exotic quantum states. When Josephson junctions are constructed utilizing these materials as the weak link, the fractional ac Josephson effect emerges in the presence of a topological supercurrent contribution. We investigate the ac Josephson effect in a Dirac semimetal Formula Presented nanowire using two complementary methods: by probing the radiation spectrum and by measuring Shapiro patterns. With both techniques, we find that the conventional supercurrent dominates at all investigated doping levels and that any potentially present topological contribution falls below our detection threshold. The inclusion of thermal noise in a resistively and capacitively shunted junction (RCSJ) model allows us to reproduce the microwave characteristics of the junction. With this refinement, we explain how weak superconducting features can be masked and provide a framework to account for elevated electronic temperatures present in realistic experimental scenarios. © 2023 American Physical Society.
URI
http://hdl.handle.net/20.500.11750/47545
DOI
10.1103/PhysRevB.108.094514
Publisher
American Physical Society
Related Researcher
  • 정민경 Jung, Minkyung
  • Research Interests nanoelectronics; quantum transport; quantum physics; qubit; condensed matter physics
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Appears in Collections:
Division of Nanotechnology 1. Journal Articles
Division of Nanotechnology Quantum Nanoelectronic Devices Lab 1. Journal Articles

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