• 제목/요약/키워드: magneto-optics

검색결과 25건 처리시간 0.023초

Investigation of Isotope Selective Characteristics of the Strontium Magneto-optical Trap by the Fluorescence Detection

  • Ko Kwang-Hoon;Jeong Do-Young;Lim Gwon;Kim Taek-Soo;Cha Yong Ho;Cha Hyung Ki;Lim You-Kyoung
    • Journal of the Optical Society of Korea
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    • 제9권3호
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    • pp.87-91
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    • 2005
  • The strontium magneto optical trap followed by a Zeeman slower has been demonstrated. The isotope selective characteristics of the trap have been investigated. The fluorescence spectrum of the MOT was compared with those of other high resolution spectroscopic methods. The red detuned deflection beam is also considered for a more selective spectrum.

An Algorithm for the Characterization of Surface Crack by Use of Dipole Model and Magneto-Optical Non-Destructive Inspection System

  • Lee, Jin-Yi;Lyu, Sung-Ki;Nam, Young-Hyun
    • Journal of Mechanical Science and Technology
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    • 제14권10호
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    • pp.1072-1080
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    • 2000
  • Leakage magnetic flux (LMF) is widely used for non-contact detection of cracks. The combination of optics and LMF offers advantages such as real time inspection, elimination of electrical noise, high spatial resolution, etc. This paper describes a new nondestructive evaluation method based on an original magneto-optical inspection system, which uses a magneto-optical sensor, LMF, and an improved magnetization method. The improved magnetization method has the following characteristics: high observation sensitivity, independence of the crack orientation, and precise transcription of the geometry of a complex crack. The use of vertical magnetization enables the visualization of the length and width of a crack. The inspection system provides the images of the crack, and shows a possibility for the computation of its depth.

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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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    • 제11권4호
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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.

Extraordinary Optical Transmission and Enhanced Magneto-optical Faraday Effect in the Cascaded Double-fishnet Structure with Periodic Rectangular Apertures

  • Lei, Chengxin;Man, Zhongsheng;Tang, Shaolong
    • Current Optics and Photonics
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    • 제4권2호
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    • pp.134-140
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    • 2020
  • A significant enhancement of the magneto-optical Faraday rotation and extraordinary optical transmission (EOT) in the cascaded double-fishnet (CDF) structure with periodic rectangular apertures is theoretically predicted by using the extended finite difference time domain (FDTD) method. The results demonstrate that the transmittance spectrum of the CDF structure has two EOT resonant peaks in a broad spectrum spanning visible to near-infrared wavebands, one of them coinciding with the enhanced Faraday rotation and large figure of merit (FOM) at the same wavelength. It is most important that the resonant position and intensity of the transmittance, Faraday rotation and FOM can be simply tailored by adjusting the incident wavelength, the thickness of the magnetic layer, and the offset between two metallic rectangular apertures, etc. Furthermore, the intrinsic physical mechanism of the resonance characteristics of the transmittance and Faraday rotation is thoroughly studied by investigating the electromagnetic field distributions at the location of resonance. It is shown that the transmittance resonance is mainly determined by different hybrid modes of surface plasmons (SPs) and plasmonic electromagnetically induced transparency (EIT) behavior, and the enhancement of Faraday rotation is mostly governed by the plasmonic electromagnetically induced absorption (EIA) behavior and the conversion of the transverse magnetic (TM) mode and transverse electric (TE) mode in the magnetic dielectric layer.

THIN FILM SENSORS FOR AUTOMOBILE

  • Taga, Yasunori
    • 한국표면공학회지
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    • 제29권5호
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    • pp.459-466
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    • 1996
  • A great amount of effort has been devoted to the constant improvement of such basic performance as dirvability, safety and enviromental protection. As a result, the total combination of various technologies has made it possible to produce safer and more comfortable automobiles. Among these technologies, plasma and thin film techniques are mainly cocerned with sensors, optics, electronics and surface modification. This paper first describes a concept of thin film processing in materials synthesis for sensors based on particle-surface interaction during deposition to provide a long life sensor applicable to sutomobiles. Some examples of parctical application of thin films to sensors are then given. These include(1) a thin films strain gauge for gravity sensors, (2) a giant magneto resistance film for speen sensors, and (3) a Magneto-impedance sensors fordetection of low magnetic field. Further progress of sophisticated thin film technology must be considered in detail to explore advanced thin film materials science and to ensure the field reliability of future sensor devices for automobile.

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Zeeman 감속기를 사용하여 감속된 원자의 포획과 포획된 원자의 특성 (Magneto-optical trap of slowed sodium atoms by using a Zeeman slower and the characteristics of trapped atoms)

  • 고광훈;정도영;한재민;이종민
    • 한국광학회지
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    • 제12권5호
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    • pp.347-351
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    • 2001
  • Zeeman 감속기를 사용하여 감속한 나트륨 원자를 자기광학적 방법으로 포획하였다. 자기광학적 방법으로 포획된 원자의 개수와 온도를 측정하고, 포획이 가능한 포획광의 주파수 영역과 펌핑광의 주파수영역을 나타내었다. Zeeman 감속기로부터 유입하는 원자의 양을 조절한 경우에 원자 개수의 증가율과 감소율을 측정하고, 이들 차이로부터 $N_2$에 비례하는 손실에 대하여 논의하였다.

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자기공명흡수법에 의한 무혈혈당측정기의 디자인 (Design of a Non-Invasive Blood Glucose Sensor Using a Magneto-Resonance Absorption Method)

  • 김동균;원종화
    • 전자공학회논문지SC
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    • 제42권2호
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    • pp.33-38
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    • 2005
  • 신체 내 혈당 변화량과 $^1H$ 원자핵의 스핀-격자 완화시간의 변화량이 관련 있음과 원자핵의 스핀-격자 완화시간을 측정하는 방법으로 자기공명흡수법이 제안된 바 있다. 자기공병흡수법에 의하여 신체 내 혈당 변화량을 감지하기 위해서는 검출 영역내 고수준의 자기장의 세기와 균일도의 확보가 필수적이다. 가정에서 손쉽게 혈당의 변화량을 측정할 수 있도록, 본 논문에서는 가정용으로 적합한 크기와 무게를 가지면서 요구되는 자기장의 세기와 균일도를 확보한 무혈혈당측정기를 디자인하였다. 여러 형상과 재질을 갖는 초기 모델들을 설계, 제작하였고, 검출 영역의 자기 특성을 비교하여 최종 재질을 결정하였다. 또한, 유한요소 해석모델을 구축하고 형상 최적화를 통하여 최종 모델을 선정하였다.