2014
DOI: 10.1364/ome.4.001903
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Mueller matrix optical and magneto-optical characterization of Bi-substituted gadolinium iron garnet for application in magnetoplasmonic structures

Abstract: A ferromagnetic garnet, used as a magneto-optical (MO) material in magneto-photonic and magneto-plasmonic structures, is characterized. We present a general procedure to determine optical and magneto-optical functions of the magneto-optic garnet by using Mueller matrix ellipsometry. In the first step, the optical functions (the refractive index spectra) of the (CaMgZr)-doped gallium-gadolinium garnet (sGGG) substrate and the Bi-substituted gadolinium iron garnet Gd1.24Pr0.48Bi1.01Lu0.27Fe4.38Al0.6O12 (Bi:GIG) … Show more

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Cited by 20 publications
(8 citation statements)
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References 47 publications
(62 reference statements)
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“…Model structures contained Si substrate, 300 nm thick layer of SiO 2 , 100 nm thick layer of Gd x Fe (100-x) , and a 3 nm thick capping Ru layer or 20 nm thick SiO 2 layer on top. A surface roughness was modelled as a separate layer using a Bruggeman Effective Medium Approximation formula 30 of the mixture of 50% of hosting material (ε) and 50% of void. The roughness was deduced as a thickness of this layer.…”
Section: Methodsmentioning
confidence: 99%
“…Model structures contained Si substrate, 300 nm thick layer of SiO 2 , 100 nm thick layer of Gd x Fe (100-x) , and a 3 nm thick capping Ru layer or 20 nm thick SiO 2 layer on top. A surface roughness was modelled as a separate layer using a Bruggeman Effective Medium Approximation formula 30 of the mixture of 50% of hosting material (ε) and 50% of void. The roughness was deduced as a thickness of this layer.…”
Section: Methodsmentioning
confidence: 99%
“…Surface roughness was also considered. We used the Bruggeman Effective Medium Approximation formula of the mixture of hosting material (ε) with void to simulate surface roughness as a thin layer with permittivity ε eff defined as follows [ 28 ]: In this formula f denotes the volume fraction of the void in the mixture (we fixed this value to 50%).…”
Section: Methodsmentioning
confidence: 99%
“…A number of square patches containing 600 periods (Λ = 500 nm) of 300 µm long and 93.7 nm thick Au stripes separated by nanoslits, have been processed by standard lift-off techniques. [45] The first set of 15 samples was fabricated by varying the e-beam exposure dose per written patch: the width r of the nanoslit is varied from patch to patch (see Fig. 1b).…”
Section: Introductionmentioning
confidence: 99%