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Cryogenic growth of tantalum thin films for low-loss superconducting circuits

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arxiv 2405.12417 v1 pith:5U3FFZLD submitted 2024-05-20 cond-mat.supr-con cond-mat.mtrl-sci

classification cond-mat.supr-concond-mat.mtrl-sci
keywords mathrmgrownsuperconductingtemperaturefilmsalphacryogeniccircuits
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abstract

Motivated by recent advancements highlighting Ta as a promising material in low-loss superconducting circuits and showing long coherence times in superconducting qubits, we have explored the effect of cryogenic temperatures on the growth of Ta and its integration in superconducting circuits. Cryogenic growth of Ta using a low temperature molecular beam epitaxy (MBE) system is found to stabilize single phase $\alpha$-Ta on several different substrates, which include Al$\mathrm{_2}$O$\mathrm{_3}$(0001), Si(001), Si(111), SiN${_x}$, and GaAs(001). The substrates are actively cooled down to cryogenic temperatures and remain < 20 K during the Ta deposition. X-ray $\theta$-2$\theta$ diffraction after warming to room temperature indicates the formation of polycrystalline $\alpha$-Ta. The 50 nm $\alpha$-Ta films grown on Al$\mathrm{_2}$O$\mathrm{_3}$(0001) at a substrate manipulator temperature of 7 K have a room temperature resistivity ($\mathrm{\rho _{300 K}}$) of 13.4 $\mathrm{\mu \Omega}$cm, a residual resistivity ratio (RRR) of 17.3 and a superconducting transition temperature (T$_C$) of 4.14 K, which are comparable to bulk values. In addition, atomic force microscopy (AFM) indicates that the film grown at 7 K with an RMS roughness of 0.45 nm was significantly smoother than the one grown at room temperature. Similar properties are found for films grown on other substrates. Results for films grown at higher substrate manipulator temperatures show higher $\mathrm{\rho _{300 K}}$, lower RRR and Tc, and increased $\beta$-Ta content. Coplanar waveguide resonators with a gap width of 3 $\mathrm{\mu}$m fabricated from cryogenically grown Ta on Si(111) and Al$\mathrm{_2}$O$\mathrm{_3}$(0001) show low power Q$_i$ of 1.9 million and 0.7 million, respectively, indicating polycrystalline $\alpha$-Ta films may be promising for superconducting qubit applications even though they are not fully epitaxial.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Low-Loss Superconducting Resonators Fabricated from Tantalum Films Grown at Room Temperature

    physics.app-ph 2025-01 conditional novelty 7.0 of 10

    Room-temperature-grown alpha-tantalum resonators on a niobium seed layer reach state-of-the-art quality factors, matching high-temperature-grown tantalum despite smaller grains and more oxygen-rich grain boundaries.

  2. Magnetic bound states embedded in tantalum superconducting thin films

    cond-mat.supr-con 2024-12 conditional novelty 5.0 of 10

    Argon milling and oxygen descumming introduce magnetic Yu-Shiba-Rusinov bound states inside the superconducting gap of tantalum thin films.

  3. Engineering high-Q superconducting tantalum microwave coplanar waveguide resonators for compact coherent quantum circuits

    quant-ph 2024-12 conditional novelty 4.0 of 10

    Tantalum resonators on silicon with a niobium seed layer reach internal quality factors up to 3.6 million at high power and kinetic inductance up to 0.6 pH per square, with thinner films giving more inductance but low...

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