• Title/Summary/Keyword: 자기장 방향

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Ferromagnetic Resonance of Magnetic Tunnel Junctions with an Exchange Biased Synthetic Ferrimagnetic Reference Layer (교환 바이어스 인위적 준강자성 기준층을 포함한 자기 터널 접합의 강자성 공명)

  • Yoon, Jung-Bum;You, Chun-Yeol;Jung, Myung-Hwa
    • Journal of the Korean Magnetics Society
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    • v.21 no.4
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    • pp.121-126
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    • 2011
  • Spin dynamics of magnetic tunnel junctions with free and fixed reference layers is investigated by ferromagnetic resonance micromagnetic simulations. First, in magnetic tunnel junctions with an exchange biased synthetic ferrimagnetic reference layer, a magnetization direction of each layer and the tunneling magnetoresistance are calculated for a DC magnetic field. To investigate the spin exciting modes in magnetic tunnel junctions, we simulate the ferromagnetic resonance frequency spectra with small RF magnetic fields. Exciting modes of the tunneling magnetoresistance calculated by an included angle between free and reference layers is interpreted from those of each layer. Spin exciting modes are different according to a signs of the DC magnetic field. In a negative magnetic field, FMR frequency spectra of free and reference layers are well elucidated by the modified Kittel's equation. However, in a positive magnetic field, there is no simple analytic solution related to FMR frequency spectra due to the coupled modes. Since ferromagnetic layers in magnetic tunnel junctions are interactive each other, careful considerations of the reference and fixed layer as well as the free layer are required for understanding on the spin dynamics of magnetic tunnel junctions with an exchange biased synthetic ferrimagnetic reference layer.

Magnetic Bias Effects in Field-annealed CoFeSiB Amorphous Ribbons (공기 중에서 자기장 열처리된 CoFeSiB 비정질 리본에서의 자기 바이어스 효과)

  • Cha, Yong-Jun;Jeong, Jong-Ryul;Kim, Cheol-Gi;Kim, Dong-Young;Yoon, Seok-Soo
    • Journal of the Korean Magnetics Society
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    • v.19 no.6
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    • pp.191-196
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    • 2009
  • Magnetic bias phenomena of field-annealed CoFeSiB amorphous ribbons showing asymmetric giant magnetoimpedance was investigated by MOKE method. The specimens removed the crystalline layer at one surface side by chemical etching were prepared and measured magnetization curves by MOKE to investigate the effect of the crystalline layer on magnetization of inner soft amorphous phase. We observed the shift of hysteresis loop, and concluded that the crystalline layer exerts bias field effect on inner soft amorphous phase and the direction of bias filed is opposite to the magnetization direction of surface crystalline layer.

FDTD Modeling using 3D CAD File of Hand-Held Mobile Phone (휴대폰의 3차원 CAD 파일을 이용한 FDTD 모델링)

  • 홍수원;이재용;김기회;오학태;박천석
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.11 no.3
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    • pp.437-444
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    • 2000
  • In this paper, we propose a method that directly converts 3D CAD files for handheld phones designed by a commercial CAD S/W, PATRAN, to FDTD modeling with 1mm resolution. To qualify the accuracy of this method, we compared the calculation of radiation pattern using 3D transient far zone transformation with the measured results by gain comparison method in anechoic chamber and the difference is less than 0.5 dB. The calculation of magnetic field distributions on the front of handheld phones has been done to find a factor contributes to SAR. The result showed up the H-field in the width direction of the phone gives more dominant effect than the field in the length or inside to the front direction.

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The Study on the Magneization of Gas Pipliles according to Distortion and Compensation of Measured Signals in MFL System (자기누설 탐상시스템에서 가스관의 착자에 의한 탐상신호 왜곡 및 보상에 관한 연구)

  • Park S. H.;Seo K.;Jung H. W.;Park G. S.;Han S. J.
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.1004-1006
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    • 2004
  • MFL PIG는 빠른 속도로 주행하면서 MFL 신호를 측정하여 기록하게 된다. PIG가 주행함에 따라 MFL 신호를 왜곡시키는데 가스관에 인가되는 강한 자기장으로 인하여 가스관이 착자되어 왜곡이 발생한다. 가스관의 착자는 종방향 착자와 횡방향 착자로 나눌수 있으며, 횡방향 착자는 검출신호를 증가시키거나 감소시키는 방향으로 왜곡을 발생시키고, 종방향 착자는 인가돼는 자기장과 수직이 되므로 검출신호를 크게 왜곡시킨다. 따라서 검출신호를 보정하여 실제 결함에 의한 신호를 검출하여야 한다. 본 연구에서는 가스관의 착자에 의한 영향을 분석하고 신호보정에 관하여 연구하였다.

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28 GHz 초전도 ECRIS의 마이크로파 전파 특성 및 이를 이용한 시스템 설계

  • Wang, Seon-Jeong;Won, Mi-Suk;Lee, Byeong-Seop;An, Chan-Yong;Kim, Seon-Ho;Gwak, Jong-Gu;Jeong, Seung-Ho;Kim, Seong-Gyu
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.134-134
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    • 2010
  • KBSI 부산센터에 건설중인 소형의 다중 양전하 중이온 가속기에 사용될 초전도 ECR 이온온은 최대 자기장 3 T, 최소 0.5 T의 자기 Mirror구조를 가지고 있으며 중심 부근의 1 T 자기장에서 28 GHz 전자공명에 의해 마이크로파의 에너지를 플라즈마로 전달한다. 최대 10 kW의 Gyrotron에서 TE02 모드로 발생하는 마이크로파는 모드변환기, 직류차단기 및 진공창을 통하여 플라즈마로 입사된다. 32.5 mm 지름의 원형 도파관에서 자기장 축방향으로 도입된 TE01 모드의 마이크로파를 Altar-Appleton-Hartree 분산관계식을 이용하여 군속도의 관점에서 살펴보았다. 플라즈마 밀도가 Cut-off에 근접하지 않는 한 마이크로파의 바깥 방향으로의 회절은 크지 않았으며, 전자공명 위치로 접근함에 따라 군속도의 방향이 바뀌어 오히려 중심 방향으로 향함을 알 수 있다. 즉 마이크로파가 플라즈마 챔버의 벽을 가열시킬 가능성은 크지 않은 것이다. 또한 뜨거운 전자 플라즈마의 Susceptibility를 이용하여 마이크로파의 플라즈마로의 전자 공명에 의한 흡수를 살펴본 결과, 운전 영역에 속하는 전자밀도가 제공되면 공명 지점에 이르기 전에 충분히 흡수되는 것을 확인하였으며, 이에 따라 챔버를 관통하여 인출부 벽에 충돌하는 마이크로파 에너지는 무시할 수 있을 것으로 보여진다. 이 결과들을 토대로 마이크로파 시스템을 설계 완료하였다.

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Inversion of the Magnetic Field Generated by a Car (차량이 발생하는 자기장에 대한 역산)

  • Lim, Mu-Taek;Park, Yeong-Sue;Rim, Hyoung-Rae;Koo, Sung-Bon;Jung, Hyun-Key;Kwak, Byoung-Wook
    • Geophysics and Geophysical Exploration
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    • v.11 no.4
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    • pp.343-349
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    • 2008
  • We have constructed a car-borne magnetic exploration system, in which a car drags a non-magnetic cart on which a magnetometer is installed. In the total magnetic field measured as a vectorial sum in this system, are included the magnetic field generated by the car itself. This magnetic field, doing the role of a magnetic noise, should be eliminated. For this purpose, we have set up a measurement condition to get the same effect as if we have put the car in one point and thereafter measured the magnetic field around it. In this case, if there is any magnetically anomalous body in the area, we can consider all the remaining magnetic field to have been generated by the car itself, once the geomagnetic field eliminated. We tried to invert the magnetic field considered to have been generated by the car and succeeded to derive the magnetic moment and the direction of the induced and remanent magnetic field of the car respectively. Once the magnetic moment and the direction of the induced and remanent magnetic field have been calculated, the magnetic field generated by them in specific points can be directly and analytically calculated. This result can be used in the future to eliminate the magnetic field generated by the car itself doing the role of a magnetic noise during the procedure of reduction of the measured magnetic exploration data by the car-borne magnetic exploration system.

Design and Construction of Cylindrical Multi-Loop Z-gradient Coil for Linearity Improvement in MRI (핵자기공명영상에서 선형성의 증강을 위한 원통형 Multi-Loop Z-경사자기장 코일의 설계와 제작)

  • 이동훈;백승태;김송희
    • Journal of Biomedical Engineering Research
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    • v.21 no.6
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    • pp.583-589
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    • 2000
  • 본 논문에서는 핵자기공명영상의 고해상도를 이루고, 영상의 신뢰성을 높이기 위해서 선형성이 증가된 경사자기장 코일의 설계와 제작에 목적을 두었다. Maxwell pair를 이용하여 Z-경사자계의 선형성을 증강시키기 위해 코일의 기하학적인 형태의 이론적인 계산과 몇 가지 형태의 코일로부터 예상되는 자기장 및 경사자기장의 분포를 구현했다. 즉, 코일 축 방향의 자기장을 구면좌표계에서 전개하는 방법으로 Maxwell pair의 크기와 위치를 계산하고, 유한요소법을 이용하여 자기장 및 경사자기장의 2차원 분포를 그렸다. 더불어 이론적인 계산 결과와 함께 자기장의 2차원 분포를 토대로 실제 경사자기장 코일을 제작하였고 이를 0.15 Τ 핵자기공명영상기에 적용하여, 영상을 획득하였다. 기존의 방법에 따른 Maxwell pair 형태를 이용한 경우에 코일지름의 40% DSV(diameter spherical volume)내에서 DSV의 5% 이내의 뒤틀림(distortion)을 갖는 선형성이 유지되었고, 새롭게 시도된 방법에 의한 경사자기장 코일의 경우는 코일지름의 70% DSV 내에서 DSV의 5% 이내의 뒤틀림을 갖는 선형성을 유지하였으며, 설계 제작된 경사자기장 코일과 RF-코일을 이용하여 이를 확인하였다. 본 연구에서 제작된 경사자기장 코일의 선형성은 Maxwell pair 코일보다 향상된 결과를 보았으며, 본 논문에서 제시하는 방법은 자기공명영상의 해상도 향상에 기여할 것으로 판단된다.

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[Mössbauer] Spectroscopic Study of La1/3Sr2/3FeO2.96 under the External Magnetic Field (산소결핍 페롭스카이트 La1/3Sr2/3FeO2.96의 외부 자기장 하에서의 Mössbauer분광학적 연구)

  • Yoon, Sung-Hyun;Jung, Jong-Yong
    • Journal of the Korean Magnetics Society
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    • v.15 no.2
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    • pp.81-84
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    • 2005
  • The origin for the charge disproportionation (CD) transition in polycrystalline $La_{1/3}Sr_{2/3}FeO_{2.96}$ was examined using X-ray diffraction and the external field $M\ddot{o}ssbauer$ssbauer spectroscopy. In order to see how the external magnetic field affects the CD state above its transition temperature, an external magnetic field of up to 6 T was applied either parallel or perpendicular to the $\gamma-ray$ direction with the sample temperature fixed at 225 K, which was above the CD transition temperature. Without an external magnetic field, a completely paramagnetic singlet was obtained in the temperature range of the averaged valence state above the transition temperature, which was interpreted as coming from the average valence $Fe^{3.6+}$. In the longitudinal geometry, a magnetic Zeeman with its intensity ratio 3:0:1:1:0:3 is superimposed to the central singlet. In the transverse geometry, however, the central singlet disappears and only a magnetic component with its intensity ratio 3:4:1:1:4:3 emerges. The existence of a singlet is understood as an evidence of the fast electron-transfer among Fe ions. Since the singlet still exists under the magnetic field, the application of an external field has little effect on the conduction mechanism of hopping electrons.

Monte Carlo Calculation of the Dose Profiles for a 6 MeV Electron Beam with Longitudinal Magnetic Fields (세로 자기장에서 6 MeV 전자선의 선량분포에 관한 몬데칼로 계산)

  • 오영기;정동혁;신교철;김기환;김정기;김진기;김부길;이정옥;문성록
    • Progress in Medical Physics
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    • v.13 no.4
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    • pp.195-201
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    • 2002
  • Several investigators have presented the effects of external magnetic fields on the dose distributions for clinical electron and photon beams. We focus the low energy electron beam with more lateral scatter In this study we calculated the beam profiles for an clinical electron beam of 6 MeV with longitudinal magnetic fields of 0.5 T-3.0 T using a Monte Carlo code. The principle of dose enhancements in the penumbra region is to deflect the laterally scattered electrons from its initial direction by the skewness of the laterally scattered electrons along the direction of magnetic field lines due to Lorentz force under longitudinal magnetic field. To discuss the dose enhancement effect on the penumbra area from the calculated results, we introduced the simple term of penumbra reduction ratio (PRR), which is defined as the percentage difference between the penumbra with and without magnetic field at the same depth. We found that the average PRR are 33%, and 49% over the depths of 1.5 cm, 2.0 cm, and 2.4 cm for the magnetic fields of 2.0 T and 3.0 T respectively. For the case of 0.5 T and 1.0 T the effects of magnetic filed were not observed significantly. In order to obtain the dose enhancement effects by the external magnetic field, we think that its strength should be more than 2 T approximately. We expect that the PRR would be saturated to 50-60% with magnetic fields of 3 T-5 T As a result of these calculations we found that the penumbra widths can be reduced with increased magnetic fields. This Penumbra reduction is explained as a result of electron lateral spread outside the geometrical edges of the beam in a longitudinal magnetic field. This means that the electron therapy benefits from the external magnetic fields.

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Analysis of Low Field Microwave Absorption Properties in CoFe/MnIr Thin Film (CoFe/MnIr 박막 재료에서 저자장 마이크로파 흡수 특성 분석)

  • Kim, Dong Young;Yoon, Seok Soo
    • Journal of the Korean Magnetics Society
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    • v.25 no.3
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    • pp.74-78
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    • 2015
  • We measured the low field microwave absorption (LFMA) and ferromagnetic resonance (FMR) signals at various magnetic field angle in exchange biased CoFe/MnIr thin film. The LFMA signals were dominantly related to the magnetization rotation process. In order to analyze the LFMA signal, we calculated transverse magnetization ($M_{\tau}$) and permeability (${\mu}_{\tau}$) for CoFe/MnIr thin film by using S-W model, which magnetic parameters of exchange bias ($H_{ex}$ = 58.5 Oe) and uniaxial anisotropy field ($H_k$ = 30Oe) was obtained from FMR signals. The LFMA signal at hard axis showed similar behavior compared with that of $M_{\tau}$. As the magnetic field angle approach to the perpendicular to hard axis, the LFMA signals were depending on both of $M_{\tau}$ and ${\mu}_{\tau}$.