Matches in SemOpenAlex for { <https://semopenalex.org/work/W3104487890> ?p ?o ?g. }
- W3104487890 endingPage "819" @default.
- W3104487890 startingPage "816" @default.
- W3104487890 abstract "Superconducting quantum information processing machines are predominantly based on microwave circuits with relatively low characteristic impedance, about 100 Ω, and small anharmonicity, which can limit their coherence and logic gate fidelity1,2. A promising alternative is circuits based on so-called superinductors3–6, with characteristic impedances exceeding the resistance quantum RQ = 6.4 kΩ. However, previous implementations of superinductors, consisting of mesoscopic Josephson junction arrays7,8, can introduce unintended nonlinearity or parasitic resonant modes in the qubit vicinity, degrading its coherence. Here, we present a fluxonium qubit design based on a granular aluminium superinductor strip9–11. We show that granular aluminium can form an effective junction array with high kinetic inductance and be in situ integrated with standard aluminium circuit processing. The measured qubit coherence time $$T_2^ ast le 30,{upmu}{mathrm{s}}$$ illustrates the potential of granular aluminium for applications ranging from protected qubit designs to quantum-limited amplifiers and detectors. A fluxonium qubit is constructed out of granular aluminium, revealing its potential for superconducting quantum technologies." @default.
- W3104487890 created "2020-11-23" @default.
- W3104487890 creator A5001620132 @default.
- W3104487890 creator A5021478266 @default.
- W3104487890 creator A5039409463 @default.
- W3104487890 creator A5052082960 @default.
- W3104487890 creator A5055134579 @default.
- W3104487890 creator A5057950995 @default.
- W3104487890 creator A5061198429 @default.
- W3104487890 creator A5064917342 @default.
- W3104487890 creator A5078852469 @default.
- W3104487890 creator A5088563837 @default.
- W3104487890 creator A5089285373 @default.
- W3104487890 creator A5090308977 @default.
- W3104487890 date "2019-04-29" @default.
- W3104487890 modified "2023-10-17" @default.
- W3104487890 title "Granular aluminium as a superconducting material for high-impedance quantum circuits" @default.
- W3104487890 cites W1488171115 @default.
- W3104487890 cites W1598607945 @default.
- W3104487890 cites W1968256495 @default.
- W3104487890 cites W2040908630 @default.
- W3104487890 cites W2060904747 @default.
- W3104487890 cites W2063513958 @default.
- W3104487890 cites W2068163719 @default.
- W3104487890 cites W2083138535 @default.
- W3104487890 cites W2086503909 @default.
- W3104487890 cites W2092093036 @default.
- W3104487890 cites W2105853371 @default.
- W3104487890 cites W2138035602 @default.
- W3104487890 cites W2165522136 @default.
- W3104487890 cites W2414386976 @default.
- W3104487890 cites W2463723514 @default.
- W3104487890 cites W2513756889 @default.
- W3104487890 cites W2541254111 @default.
- W3104487890 cites W2542246658 @default.
- W3104487890 cites W2617427937 @default.
- W3104487890 cites W2724166426 @default.
- W3104487890 cites W2726610744 @default.
- W3104487890 cites W2743756885 @default.
- W3104487890 cites W2755255888 @default.
- W3104487890 cites W2757141329 @default.
- W3104487890 cites W2767445834 @default.
- W3104487890 cites W2767838051 @default.
- W3104487890 cites W2786746876 @default.
- W3104487890 cites W2787215092 @default.
- W3104487890 cites W2788498612 @default.
- W3104487890 cites W2798311991 @default.
- W3104487890 cites W2963648880 @default.
- W3104487890 cites W2964275564 @default.
- W3104487890 cites W3102921046 @default.
- W3104487890 cites W3103768005 @default.
- W3104487890 cites W3103778533 @default.
- W3104487890 cites W3105819436 @default.
- W3104487890 cites W3106135740 @default.
- W3104487890 cites W3121574686 @default.
- W3104487890 doi "https://doi.org/10.1038/s41563-019-0350-3" @default.
- W3104487890 hasPublicationYear "2019" @default.
- W3104487890 type Work @default.
- W3104487890 sameAs 3104487890 @default.
- W3104487890 citedByCount "87" @default.
- W3104487890 countsByYear W31044878902019 @default.
- W3104487890 countsByYear W31044878902020 @default.
- W3104487890 countsByYear W31044878902021 @default.
- W3104487890 countsByYear W31044878902022 @default.
- W3104487890 countsByYear W31044878902023 @default.
- W3104487890 crossrefType "journal-article" @default.
- W3104487890 hasAuthorship W3104487890A5001620132 @default.
- W3104487890 hasAuthorship W3104487890A5021478266 @default.
- W3104487890 hasAuthorship W3104487890A5039409463 @default.
- W3104487890 hasAuthorship W3104487890A5052082960 @default.
- W3104487890 hasAuthorship W3104487890A5055134579 @default.
- W3104487890 hasAuthorship W3104487890A5057950995 @default.
- W3104487890 hasAuthorship W3104487890A5061198429 @default.
- W3104487890 hasAuthorship W3104487890A5064917342 @default.
- W3104487890 hasAuthorship W3104487890A5078852469 @default.
- W3104487890 hasAuthorship W3104487890A5088563837 @default.
- W3104487890 hasAuthorship W3104487890A5089285373 @default.
- W3104487890 hasAuthorship W3104487890A5090308977 @default.
- W3104487890 hasBestOaLocation W31044878902 @default.
- W3104487890 hasConcept C107923615 @default.
- W3104487890 hasConcept C12038964 @default.
- W3104487890 hasConcept C121332964 @default.
- W3104487890 hasConcept C134146338 @default.
- W3104487890 hasConcept C165801399 @default.
- W3104487890 hasConcept C177731217 @default.
- W3104487890 hasConcept C192562407 @default.
- W3104487890 hasConcept C203087015 @default.
- W3104487890 hasConcept C26873012 @default.
- W3104487890 hasConcept C2781181686 @default.
- W3104487890 hasConcept C29210110 @default.
- W3104487890 hasConcept C49040817 @default.
- W3104487890 hasConcept C54101563 @default.
- W3104487890 hasConcept C62520636 @default.
- W3104487890 hasConcept C73214911 @default.
- W3104487890 hasConcept C84114770 @default.
- W3104487890 hasConcept C85608146 @default.
- W3104487890 hasConceptScore W3104487890C107923615 @default.
- W3104487890 hasConceptScore W3104487890C12038964 @default.