Science · 2006 · 125 citations · 13 references
Quantum ScienceSuperconducting MaterialHigh-tc SuperconductivityEngineeringQuantum ComputingPhysicsFractional-order SystemD-wave Pairing SymmetryApplied PhysicsSuperconductivityCondensed Matter PhysicsHigh Tc SuperconductorsDevice SymmetryFractional StochasticsSuperconducting DevicesQuantum SuperconductivityFractional DynamicLogic Circuit
The d-wave pairing symmetry in high-critical temperature superconductors makes it possible to realize superconducting rings with built-in pi phase shifts. Such rings have a twofold degenerate ground state that is characterized by the spontaneous generation of fractional magnetic flux quanta with either up or down polarity. We have incorporated pi phase-biased superconducting rings in a logic circuit, a flip-flop, in which the fractional flux polarity is controllably toggled by applying single flux quantum pulses at the input channel. The integration of p rings into conventional rapid single flux quantum logic as natural two-state devices should alleviate the need for bias current lines, improve device symmetry, and enhance the operation margins.
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V. V. Ryazanov, V. A. Oboznov, A. Yu. Rusanov et al. · Physical Review Letters · 2001 · 1.2K citations · Full text
Superconducting Material, Magnetic Properties, Engineering +22
Josephson Junction through a Thin Ferromagnetic Layer: Negative Coupling
Takis Kontos, M. Aprili, J. Lesueur et al. · Physical Review Letters · 2002 · 635 citations