Abstract
We have measured the temperature dependence of the microwave surface impedance and the nonlinear response of high-quality MgB/sub 2/ films on c-cut sapphire at temperatures below 40 K. MgB/sub 2/ films with surface resistance (R/sub s/) as low as 0.02 m/spl Omega/ at 8 K and 8.5 GHz were prepared in an ex-situ process by annealing a boron layer in magnesium-rich environment. The nonlinear properties of the MgB/sub 2/ films were investigated as a function of temperature by means of higher-order harmonic-generation measurements in patterned coplanar waveguide devices. We find that the nonlinear responses of devices fabricated from MgB/sub 2/ films were substantially higher than the nonlinear responses of similar devices fabricated from YBa/sub 2/Cu/sub 3/O/sub 7-/spl delta// thin films at the same reduced temperature. We also compared the nonlinear responses of surface ion-milled MgB/sub 2/ films with as-grown films and found that the ion-milled films gave lower nonlinear responses at temperatures below 24 K. The consequences of these measurements for passive microwave device applications of MgB/sub 2/ films are also discussed.
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