Low-Loss Yba2cu3o7 Films On Flexible, Polycrystalline-Yttria-Stabilized Zirconia Tapes For Cryoelectronic Applications

APPLIED PHYSICS LETTERS(2001)

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摘要
High-temperature superconducting films on flexible, low-thermal conductivity, low-loss substrates offer a unique base for the development of cryoelectronic digital interconnects. Using an ion-beam-assisted pulsed-laser-deposition technique, we developed biaxially textured YBa2Cu3O7 (YBCO) films on flexible polycrystalline-yttria-stabilized zirconia (YSZ) substrates with the following materials properties: (i) in-plane x-ray Phi -scan full width at half maximum of similar to7 degrees; (ii) transition temperatures (T-c) in the range of 88-89 K with transition widths (DeltaT(c)) of similar to0.5 K; (iii) critical current densities (J(c)) in the range 1.5-2x10(6) A/cm(2) at 77 K, zero field; (iv) magnetic penetration depth (lambda) of 284 nm at 77 K; and (v) surface resistance (R-s) of 700 mu Omega at 77 K, 10 GHz. The low-microwave loss, biaxilly textured YBCO films combined with the low-thermal conductivity YSZ substrate could facilitate a variety of RF cryoelectronic applications. (C) 2001 American Institute of Physics.
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magnetic fields,films,thermal conductivity,deposition,yttrium,resistance,penetration depth,full width at half maximum,width,zirconium,surfaces,magnetic properties,transition temperature,yttria stabilized zirconia,pulsed laser deposition,current density,superconductors,polycrystalline,electromagnetic field,electron beam,penetration,material properties,depth
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