4.5 Article

Application of a Microfabricated Microwave Resonator in a Co-Pd-Based Magnetic Hydrogen-Gas Sensor

Journal

PHYSICAL REVIEW APPLIED
Volume 18, Issue 2, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevApplied.18.024015

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This research investigates the ferromagnetic resonance (FMR) response of microfabricated microwave resonators loaded with small Co16Pd84 alloy rectangles. The use of the microwave-resonator structure significantly enhances the FMR signal-to-noise ratio. The study reveals a similar FMR peak shift to that of Co16Pd84 continuous films in the presence of hydrogen gas. The high sensitivity of the FMR signal of the Co16Pd84 alloy rectangle to hydrogen exposure allows for the measurement of relatively small hydrogen-concentration steps near 100% H-2.
We investigate the ferromagnetic resonance (FMR) response of microfabricated microwave resonators loaded with small Co16Pd84 alloy rectangles. A major increase in the FMR signal-to-noise ratio is achieved by employing the microwave-resonator structure. A FMR peak shift similar to that of Co16Pd84 continuous films is measured in the presence of hydrogen gas in the sample environment. We show that the very high sensitivity of the FMR signal of the Co16Pd84 alloy rectangle to hydrogen exposure can be used to measure relatively small hydrogen-concentration steps near 100% H-2. Additionally, we also demonstrate that this structure can measure hydrogen over a concentration range from 3% to 100% H-2 in N-2. In time-dependent FMR measurements, we discover a temperature dependence of the FMR signal, which we relate to intrinsic temperature-dependent changes in saturation magnetization and the magnetic anisotropy of the Co-Pd alloy.

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