• 제목/요약/키워드: magnetic field simulation

검색결과 486건 처리시간 0.028초

Micromagnetic Simulations for Spin Transfer Torque in Magnetic Multilayers

  • You, Chun-Yeol
    • Journal of Magnetics
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    • 제17권2호
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    • pp.73-77
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    • 2012
  • We investigate spin transfer torque (STT) in magnetic multilayer structures using micromagnetic simulations. We implement the STT contribution for magnetic multilayer structures in addition to the Landau-Lifshitz-Gilbert (LLG) micromagnetic simulators. In addition to the Sloncewski STT term, the zero, first, and second order field-like terms are also considered as well as the effects of the Oersted field due to the running current are addressed. We determine the switching current densities of the free layer with the exchange biased synthetic ferrimagnetic reference layers for various cases.

A self-consistent model for the formation and eruption of a solar prominence

  • Magara, Tetsuya
    • 천문학회보
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    • 제46권2호
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    • pp.47.2-47.2
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    • 2021
  • The present study is focused on origins of the flow and magnetic structure involved in the formation and eruption of a solar prominence. To clarify them, we performed an MHD simulation based on the 3-dimensional emerging flux tube (3DEFT) model, in which self-consistent evolution of a flow and magnetic field passing freely through the solar surface was obtained by seamlessly connecting subsurface dynamics with surface dynamics. By analyzing Lagrangian displacements of magnetized plasma elements, we demonstrate the flow structure which is naturally incorporated to the magnetic structure of the prominence formed via dynamic interaction between the flow and magnetic field.

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Current overshoot operation of a REBCO magnet to mitigate SCF

  • Lee, Changhyung;Hahn, Seungyong;Bang, Jeseok;Cho, Jeonwook;Kim, Seokho
    • 한국초전도ㆍ저온공학회논문지
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    • 제20권4호
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    • pp.65-69
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    • 2018
  • Due to large in-field current carrying capacity and strong mechanical strength, a REBCO wire has been regarded as a viable high temperature superconductor (HTS) option for high field MRI and > 1 GHz (>23.5 T) NMR magnets. However, a REBCO magnet is well known to have an inherent problem of field inhomogeneity, so-called 'Screening Current induced magnetic Field (SCF)'. Recently, 'field shaking' and 'current overshoot operation' techniques have been successfully demonstrated to mitigate the SCF and enhance the field homogeneity by experiments. To investigate the effectiveness of current overshooting operation technique, a numerical simulation is conducted for a test REBCO magnet composed of a stack of double pancake coils using '2D edge-element magnetic field formulation' combined with 'domain homogenization' scheme. The simulation result demonstrates that an appropriate amount of current overshoot can negate the SCF. To verify the simulation results, current overshoot experiments are conducted for the REBCO magnet in liquid nitrogen. Experimental results also demonstrate the possible application of current overshoot technique to mitigate the SCF and enhance the field homogeneity.

Metallic Crack Detections by Planar Inductive Coil Sensor Under AC and DC Magnetic Fields

  • Lee, Joon-Sik;Nam, Baek-Il;Kim, Ki-Hyeon
    • Journal of Magnetics
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    • 제17권3호
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    • pp.210-213
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    • 2012
  • To detect the surface and the opposite side cracks on iron specimen under AC and DC magnetic fields, the planar inductive coil sensors were employed. When the induced signals were measured, the planar inductive coil sensor and the magnetic field source were lifted off about 2 mm from the top surface of the specimen. AC magnetic fields and DC magnetic fields were applied to the specimens by single straight Cu coil and NdFeB permanent magnet, respectively. The detected signals at crack positions were good coincidence with those of the simulation results.

초크랄스키법에 의한 8인치 실리콘 단결정 성장시 비대칭 커스프자장의 영향에 관한 연구 (A numerical study on the effects of the asymmetric cusp magnetic field in 8 inch silicon single crystal growth by Czochralski method)

  • 이승철;정형태;윤종규
    • 한국결정성장학회지
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    • 제6권1호
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    • pp.1-10
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    • 1996
  • 초크랄스키법에 의한 8언치 실리콘 단결정 성장시 커스프자장의 영향에 관한 수치 해석적 연구를 행하였다. 액상실리콘의 유동에 대한 모렐은 저레이놀즈수 모렐을 사용하였다. 대칭커스프자장은 유션의 강도를 감쇄하였고, 특히 도가니 벽면 근처에서의 유동의 감쇄효과가 현저하였다. 결정으로 혼업되는 산소의 농도는 인가되는 커스프자장의 증가에 따라 감소하였다. 그리고, 결정으로 혼업되는 산소농도의 균일성은 향상되었다. 비대칭커스프 자장은 결정으로 혼 입되는 산소의 농도를 중가시켰지만, 반경방향의 산소농도의 분포는 일정하게 유지되었다. 대칭 과 비대청 커스프자장의 적절한 조합을 행하면 축방향으로 일정한 산소의 분포를 갖는 적절한 조업조건이 도출될 것으로 예상된다.

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Three Dimensional Computer Modeling of Magnetospheric Substorm

  • Min, Kyoung-W.
    • Journal of Astronomy and Space Sciences
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    • 제6권1호
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    • pp.1-15
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    • 1989
  • Magnetospheic substorm in the magnetotail region is studied numerically by means of a three dimensional MHD code. The analytic solution for the quiet magnetotail is employed as an initial configuration. The localized solar wind is modeled to enter the simulation domain through the boundaries located in the magnetotail lobe region. As a result of the interaction between the solar wind and the magnetosphere, the magnetic field lines are stretched, and the plasma sheet becomes thinner and thinner. When the current driven resistivity is generated, magnetic reconnection is triggered by this resistivity. The resulting plasma jetting is found to be super-magnetosonic. Although the plasmoid formation and its tailward motion is not quite clear as in the two dimensional simulation, which is mainly because of the numerical model chosen for the present simulation, the rarification of the plasmas near the x-point is observed. Field aligned currents are observed in the late expansive stage of the magnetospheric substorm. These field aligned currents flow from the tail toward the ionosphere on the dawn side from the ionosphere to ward the tail on the dusk side, namely in the same sense of the region 1 current. As the field aligned currents develop, it is found that the cross tail current in the earth side midnight section of the magnetic x-point is reduced.

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Simulation of a solar eruption with a background solar wind

  • 이환희;;강지혜
    • 천문학회보
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    • 제41권1호
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    • pp.46.3-47
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    • 2016
  • We construct a solar eruption model with a background solar wind by performing three-dimensional zero-beta magnetohydrodynamic (MHD) simulation. The initial configuration of a magnetic field is given by nonlinear force-free field (NLFFF) reconstruction applied to a flux emergence simulation. The background solar wind is driven by upflows imposed at the top boundary. We analyzed the temporal development of the Lorentz force at the flux tube axis. Based on the results, we demonstrate that a solar eruption is caused by the imbalance between magnetic pressure gradient force and magnetic tension force. We conclude that this imbalance is produced by a weak but continuously existing solar wind above an active region.

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자화율 차이로 인해 왜곡된 영상으로부터 금속 바늘의 위치 결정 (Determining the Location of Metallic Needle from MR Images Distorted by Susceptibility Difference)

  • 김은주;김대홍
    • Investigative Magnetic Resonance Imaging
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    • 제14권2호
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    • pp.87-94
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    • 2010
  • 목적: 금속에 의한 영상 왜곡에 대한 정확한 계산하고 영상으로부터의 금속 물질의 위치 결정한다. 대상 및 방법: 주자기장과 일정 각도를 이루는 무한히 긴 비자성 금속 실린더에 대한 라플라스 방정식을 풀고, 이 결과를 이용하여 절편선택 경사자계와 주파수 부호화 경사자계에 의한 영상에 왜곡을 계산한다. 계산 결과를 바탕으로 하여 왜곡된 영상으로부터 원통형 보철물의 위치를 계산한다. 결과: Folded point와 금속 실린더의 중심 사이의 거리를 영상으로부터 측정하여 계산 결과와 비교한다. 측정 결과와 계산 결과 간의 퍼센트 오차는 한 경우를 제외하고 5% 이내였다. 결론: 금속 실린더가 자기장 하에 있을 때, 영상의 왜곡을 시뮬레이션 하였고, 이 기술은 생검술 또는 외과 수술 등을 자기공명영상법을 이용여 실시간 모니터링하는데 적용할 수 있을 것으로 기대한다.

In situ analysis of capturing dynamics of magnetic nanoparticles in a microfluidic system

  • Munir, Ahsan;Zhu, Zanzan;Wang, Jianlong;Zhou, H. Susan
    • Smart Structures and Systems
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    • 제12권1호
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    • pp.1-22
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    • 2013
  • Magnetic nanoparticle based bioseparation in microfluidics is a multiphysics phenomenon that involves interplay of various parameters. The ability to understand the dynamics of these parameters is a prerequisite for designing and developing more efficient magnetic cell/bio-particle separation systems. Therefore, in this work proof-of-concept experiments are combined with advanced numerical simulation to design and optimize the capturing process of magnetic nanoparticles responsible for efficient microfluidic bioseparation. A low cost generic microfluidic platform was developed using a novel micromolding method that can be done without a clean room techniques and at much lower cost and time. Parametric analysis using both experiments and theoretical predictions were performed. It was found that flow rate and magnetic field strength greatly influence the transport of magnetic nanoparticles in the microchannel and control the capturing efficiency. The results from mathematical model agree very well with experiments. The model further demonstrated that a 12% increase in capturing efficiency can be achieved by introducing of iron-grooved bar in the microfluidic setup that resulted in increase in magnetic field gradient. The numerical simulations were helpful in testing and optimizing key design parameters. Overall, this work demonstrated that a simple low cost experimental proof-of-concept setup can be synchronized with advanced numerical simulation not only to enhance the functional performance of magneto-fluidic capturing systems but also to efficiently design and develop microfluidic bioseparation systems for biomedical applications.