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Frontiers in Magneto-optics of Magnetophotonic Crystals

  • Inoue, M.;Fedyanin, A.A.;Baryshev, A.V.;Khanikaev, A.B.;Uchida, H.;Granovsky, A.B.
    • Journal of Magnetics
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    • v.11 no.4
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    • pp.195-207
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    • 2006
  • The recently published and new results on design and fabrication of magnetophotonic crystals of different dimensionality are surveyed. Coupling of polarized light to 3D photonic crystals based on synthetic opals was studied in the case of low dielectric contrast. Transmissivity of opals was demonstrated to strongly depend on the propagation direction of light and its polarization. It was shown that in a vicinity of the frequency of a single Bragg resonance in a 3D photonic crystal the incident linearly polarized light excites inside the crystal the TE- and TM-eigen modes which passing through the crystal is influenced by Brags diffraction of electromagnetic field from different (hkl) sets of crystallographic planes. We also measured the faraday effect of opals immersed in a magneto-optically active liquid. It was shown that the behavior of the faraday rotation spectrum of the system of the opal sample and magneto-optically active liquid directly interrelates with transmittance anisotropy of the opal sample. The photonic band structure, transmittance and Faraday rotation of the light in three-dimensional magnetophotonic crystals of simple cubic and face centered cubic lattices formed from magneto-optically active spheres where studied by the layer Korringa-Kohn-Rostoker method. We found that a photonic band structure is most significantly altered by the magneto-optical activity of spheres for the high-symmetry directions where the degeneracies between TE and TM polarized modes for the corresponding non-magnetic photonic crystals exist. The significant enhancement of the Faraday rotation appears for these directions in the proximity of the band edges, because of the slowing down of the light. New approaches for one-dimensional magnetophotonic crystals fabrication optimized for the magneto-optical Faraday effect enhancement are proposed and realized. One-dimensional magnetophotonic crystals utilizing the second and the third photonic band gaps optimized for the Faraday effect enhancement have been successfully fabricated. Additionally, magnetophotonic crystals consist of a stack of ferrimagnetic Bi-substituted yttrium-iron garnet layers alternated with dielectric silicon oxide layers of the same optical thickness. High refractive index difference provides the strong spatial localization of the electromagnetic field with the wavelength corresponding to the long-wavelength edge of the photonic band gap.

The Effect on Rats Serum Lipid of Treadmill Exercise and Green Tea Extracts Intake with High Fat Diet (고지방식이에 Treadmill운동과 녹차추출물 섭취가 흰쥐의 혈청지질에 미치는 영향)

  • 정원훈;신미경
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.29 no.4
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    • pp.683-690
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    • 2000
  • In this research high-fat-diet, which amounts to 40% out of the total calories, is prepared and taken to SD-lined rats for four weeks, and the exercise is taken using treadmill so that two groups are formed; one is for exercise group (E, EG) and the other for non-exercise group (CO,G). In addition the diet-intake-amount and body weight are measured for momparing a green tea extract intake group (EG,G) with a non-intake group (CO,E) and then serum lipid components can be analyzed after four weeks. Considering the total diet amounts for four weeks, Co group has the largest while the EG group does the smallest for the diet-intake-amounts; there is, however, no significant difference among all groups. Both body weight gain and the feed efficiency ratio of the CO group are larger than those of the EG and G group with significant differences (p<0.05). Taking into account the serum lipid components analysis, all of serum total cholesterol, LDL-cholesterol, and triglyceride of EG group have smaller values than those of non-exercise groups (CO,G) with significant differences (p<0.05) respectively, while HDL/LDL-cholesterol of EG group does a larger value than that of non-exercise groups with significant difference (p<0.05); these, hence, show efficient results. For the HDL-cholesterol level, there are no significant differences among each group and the ratio TC/HDL-cholesterol of EG group is smaller than that of Co group with a significant difference (p<0.05). Therefore, we can draw conclusions that exercise and green tea extract intake group (EG) has relatively better results than non-exercise groups (CO, G) through serum lipid components results and furthermore the effects of the green tea extracts intake is considered to play a supplementary role for the improvement of the serum lipid components.

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