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Detection of spinwave instability thresholds in partially magnetized ferrites using dielectric resonator

Posted on:2017-06-19Degree:M.SType:Thesis
University:Northeastern UniversityCandidate:Geiler, MichaelFull Text:PDF
GTID:2468390011488894Subject:Electromagnetics
Abstract/Summary:
Yittrium Iron Garnet Y3Fe6O12 and Lithium ferrite LiFe5O8 mono and poly crystals were investigated for their spinwave linewidth DeltaHk, ferromagnetic resonance linewidth DeltaH and complex magnetic losses mu' and mu'' at L and S bands. Conventional methods of Spinwave linewidth typically require very high power microwave sources and associated high power components. Therefore, we developed a Dielectric Resonator (DR) based test method that allows for measurement of DeltaHk using low power, common microwave laboratory equipment, while providing additional capability to measure the other relevant magnetic material characteristics.;The samples used in this research were 0.030" diameter, abrasive milled spheres provided by Pacific Ceramics Inc, and Ferrisphere Inc. and included a variety of standard off-the-shelf material offerings. The saturation magnetization Ms of the samples ranged from 75 Gauss to 3700 Gauss. The DeltaH and DeltaHk of the samples were in the ranges of 0.5 to 200 Oersteds, and 0.5 to 30 Oersteds, respectively. Practical frequencies of operation for this system are 1 GHz to 20 GHz with less than 20W required RF power. Operation below 1 GHz and up to 40 GHz is possible.;Reduction of intrinsic Ms in YIG in achieved by doping with Gadolinium and/or Aluminum. These additions were found to affect the microwave properties of the materials as well. Dopants like Cobalt, Manganese and Holmium do not effect the saturation magnetization but they do alter the high power microwave properties of the material similarly to Gd and Al. Several DRs were designed and modeled using Ansys HFSS electromagnetic finite element solver. We designed experiments that allow the measurement of all relevant microwave properties in one convenient test setup. This includes simultaneous control of multiple variables including RF field, frequency and power, and DC field strength.
Keywords/Search Tags:Spinwave, Power, Using
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