PACS numbers

03.67.Lx Quantum computation architectures and implementations 85.25.Cp Josephson devices
  1. V.A. Vozhakov, M.V. Bastrakova et alState control in superconducting quantum processors65 421–439 (2022)
    03.67.Lx, 03.75.Lm, 42.50.Dv, 85.25.Cp (all)
  2. Yu.M. Shukrinov “Anomalous Josephson effect65 317–354 (2022)
    74.50.+r, 85.25.Cp, 85.75.−d (all)
  3. A.V. Samokhvalov, A.S. Mel’nikov, A.I. Buzdin “Long-range ballistic transport mechanisms in superconducting spintronics59 571–576 (2016)
    74.45.+c, 74.78.Na, 85.25.Cp (all)
  4. I.I. Ryabtsev, I.I. Beterov et alSpectroscopy of cold rubidium Rydberg atoms for applications in quantum information59 196–208 (2016)
    03.67.Lx, 32.70.Jz, 32.80.−t, 32.80.Ee, 32.80.Rm (all)
  5. D.J. Wineland “Superposition, entanglement, and raising Schrödinger's cat57 (10) (2014)
    03.67.Bg, 03.67.Lx, 37.10.−x (all)
  6. K.A. Valiev “Quantum computers and quantum computations48 1–36 (2005)
    03.65.Yz, 03.67.−a, 03.67.Lx (all)
  7. Yu.A. Pashkin, O.V. Astaf’ev et alJosephson solid-state qubits47 943–944 (2004)
    03.67.Lx, 85.25.Cp (all)
  8. L.B. Ioffe, M.V. Feigel’man “Realization of topologically protected quantum bits in a Josephson junction array46 759–764 (2003)
    03.67.Lx, 03.67.Pp, 74.81.Fa (all)
  9. M.V. Feigel’man “A quantum bit based on a Josephson contact between conventional and high-temperature superconductors (theory)42 823–825 (1999)
    03.67.Lx, 73.23.Hk, 73.40.−c, 85.25.Cp (all)
  10. V.V. Ryazanov “Josephson superconductor-ferromagnet-superconductor π-contact as an element of a quantum bit (experiment)42 825–827 (1999)
    03.67.Lx, 73.23.Hk, 73.40.−c, 85.25.Cp (all)
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