• 제목/요약/키워드: Soft ferromagnetic

검색결과 42건 처리시간 0.026초

New Classes of LC Resonators for Magnetic Sensor Device Using a Glass-Coated Amorphous CO83.2B3.3Si5.9Mn7.6 Microwire

  • Kim, Yong-Seok;Yu, Seong-Cho;Hwang, Myung-Joo;Lee, Hee-Bok
    • Journal of Magnetics
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    • 제10권3호
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    • pp.122-127
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    • 2005
  • New classes of LC resonators for micro magnetic sensor device were proposed and fabricated. The first type LC resonator (Type I) consists of a small piece of microwire and two cylindrical electrodes at the end of the microwire without direct contact to its ferromagnetic core. In type I resonator the ferromagnetic core of the microwire and cylindrical electrodes act as an inductor and two capacitors respectively to form a LC circuit. The second type LC resonator (Type II) consists of a solenoidal micro-inductor with a bundle of soft magnetic microwires as a core. The solenoidal micro-inductors fabricated by MEMS technique were $500\sim1,000\;\mu{m}$ in length with $10\sim20$ turns. A capacitor is connected in parallel to the micro-inductor to form a LC circuit. A tiny glass coated $CO_{83.2}B_{3.3}Si_{5.9}Mn_{7.6}$ microwire was fabricated by a glass-coated melt spinning technique. A supergiant magneto-impedance effect was found in a type I resonator as much as 400,000% by precise tuning frequency at around 518.51 MHz. In type II resonator the changes of inductance as a function of external magnetic field in micro-inductors with properly annealed microwire cores were varied as much as 370%. The phase angle between current and voltage was also strongly dependent on the magnetic field. The drastic increments of magnetoimpedance at near the resonance frequency were observed in both types of LC resonators. Accordingly, the sudden change of the phase angle, as large as $180^{\circ}C$, evidenced the occurrence of the resonance at a given external magnetic field.

수소화 및 전자빔 사진식각 기술에 의한 비가역적 마이크로 크기의 강자성 구조체 개발 (Development of Irreversible Micro-size Ferromagnetic Structures by Hydrogenation and Electron-beam Lithography)

  • 윤의중
    • 대한전자공학회논문지SD
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    • 제43권1호
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    • pp.7-12
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    • 2006
  • 본 연구에서는 수소화 와 전자빔 사진식각 공정을 이용하여 비가역적이며 안정화된 마이크로 크기의 강자성 구조체를 개발하였다. $Fe_XZr_{100-x}(x=65-85\%)$의 평균성분과 약 1 nm 정도의 성분변조주기를 가지며 총두께가 100 nm 정도인 성분변조(CM) 된 Fe-Zr 박막이 적층되었다. CM Fe-Zr 박막의 자성성질은 SQWID magnetometer, VSM, 그리고 B-H loop tracer로 측정하였다. 수소화 과정 후에 CM 박막은 유사한 균질의 합금 막 보다 모든 성분에서 더 큰 자기 모멘트를 나타내었고 $Fe_{80}Zr_{20}$ 성분에서 가장 큰 증가를 보였다. 수소화 된 $Fe_{80}Zr_{20}$ CM 막은 상온에서 aging을 거친 후에 아주 큰 자기모멘트 증가를 보여 안정되고 비가역적이며 연자성 상태로 변화됨을 알 수 있었다. 전자빔 사진식각기술을 사용하여 원형의 윈도우를 $Fe_{80}Zr_{20}$ CM막 위에 형성한 후에 이 윈도우를 통하여 선택적인 수소화를 실행하였다. 사진식각기술을 통한 수소화는 $49\%$의 자기 모멘트를 증가 시켰다. 이 방법은 나노 크기의 구조에도 적용할 수 있다.

Thermal Stability, Mechanical Properties and Magnetic Properties of Fe-based Amorphous Ribbons with the Addition of Mo and Nb

  • Han, Bo-Kyeong;Jo, Hye-In;Lee, Jin Kyu;Kim, Ki Buem;Yim, Haein
    • Journal of Magnetics
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    • 제18권4호
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    • pp.395-399
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    • 2013
  • The metallic glass ribbons of $[(Fe_xCo_{1-x})_{0.75}B_{0.2}Si_{0.05}]_{96}Mo_4$ (x = 0, 0.3, 0.6, 0.9 at.%) and $[(Fe_xCo_{1-x})_{0.75}B_{0.2}Si_{0.05}]_{96}Nb_4$ (x = 0, 0.3, 0.6, 0.9 at.%) were obtained by melt spinning with 25-30 ${\mu}m$ thickness. The thermal stability, mechanical properties and magnetic properties of Fe-Co-B-Si based systems were investigated. The values of thermal stability were measured using differential scanning calorimetry (DSC), including glass transition temperature ($T_g$), crystallization temperature ($T_x$) and supercooled liquid region (${\Delta}T_x=T_x-T_g$). These amorphous ribbons were identified as fully amorphous, using X-ray diffraction (XRD). The mechanical properties of Febased samples were measured by nano-indentation. Magnetic properties of the amorphous ribbons were measured by a vibrating sample magnetometer (VSM). The amorphous ribbons of $[(Fe_xCo_{1-x})_{0.75}B_{0.2}Si_{0.05}]_{96}Mo_4$ (x = 0, 0.3, 0.6, 0.9 at.%) and $[(Fe_xCo_{1-x})_{0.75}B_{0.2}Si_{0.05}]_{96}Nb_4$ (x = 0, 0.3, 0.6, 0.9 at.%) exhibited soft magnetic properties with low coercive force ($H_c$) and high saturation magnetization (Ms).

Dynamic Spin Switching of Magnetic Films and Tunnel Junctions

  • Miyazaki, T.;Ando, Y.;Kubota, H.;Mizukami, Y.;Nakamura, H.
    • 한국자기학회:학술대회 개요집
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    • 한국자기학회 2003년도 하계학술연구발표회 및 한.일 공동심포지엄
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    • pp.272-273
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    • 2003
  • Spin dynamics has been investigated intensively in various kinds of fields. Most popular one is an initial permeability at high frequency. Also, magnetic after-effect such as thermal fluctuation of fine magnetic particles and disaccommodation in soft magnetic materials were extensively studied in the past. When we apply an external farce with the same frequency as that of the system being examined, the system absorbs the external energy and the precession enhances. It is called resonance in general. Among the various resonances, ferromagnetic resonance (FMR) has been used as a good tool to evaluate material constants such as saturation manetization or spin damping parameter by analyzing a resonance curve. In this talk first instinctive understanding of Gilbert spin damping and spin pumping will be explained. Then, experimental data for enhancement of Gilbert damping parameter (G) evaluated from FMR spectrum and spin precession measured by a time resolved pump-probe method for Permalloy thin film will be introduced. Finally, magnetization reversal observed by air-coplanar probe will be given.

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Magnetic resonance study on boron substituted amorphous FeZrMn alloys

  • A.N.Ulyanov;Tian, Sheng-Bo;Kim, Kyeong-Sup;V.Srinivas;Yu, Seong-Cho
    • 한국자기학회:학술대회 개요집
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    • 한국자기학회 2003년도 하계학술연구발표회 및 한.일 공동심포지엄
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    • pp.90-91
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    • 2003
  • Amorphous magnetic materials with competing magnetic interactions are the subject of current interest. Critical behaviour studies have been performed in order to understand the nature of the phase transition at the Curie point (T$\sub$c/) and type of magnetic ordering below the T$\sub$c/. In some cases there exists a temperature interval in which the magnetic system consists of ferromagnetic grains separated by the paramagnetic interlayers. Magnetic properties of nanoparticles embedded in amorphous matrix also are the subject of recent interest. While these materials exhibit excellent soft magnetic properties at room temperature, some of them have been found to be superparamagnetic in the temperature range above the T$\sub$c/ of the matrix. Thus the role of different magnetic phases in the intergrain magnetic coupling can possibly be taken apart in a sufficiently broad temperature range and investigated separately. In particular materials with competing magnetic exchange interactions show characteristics of enhanced magnetoresistance and softer magnetic properties when magnetic nanocrystals are dispersed in amorphous matrix. We expect careful magnetic measurements in the vicinity of T$\sub$c/ would throw some light on magnetic behaviour of above materials. We present here the FMR analysis of Fe$\sub$82/Mn$\sub$8-x/B$\sub$x/Zr$\sub$10/ alloy near the Curie point.

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Effect of Milling Speed on the Structural and Magnetic Properties of Ni70Mn30 Alloy Prepared by Planetary Ball Mill Method

  • Hussain, Imad;Lee, Ji Eun;Jeon, So Eun;Cho, Hyun Ji;Huh, Seok-Hwan;Koo, Bon Heun;Lee, Chan Gyu
    • 한국재료학회지
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    • 제28권10호
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    • pp.539-543
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    • 2018
  • We report the structural, morphological and magnetic properties of the $Ni_{70}Mn_{30}$ alloy prepared by Planetary Ball Mill method. Keeping the milling time constant for 30 h, the effect of different ball milling speeds on the synthesis and magnetic properties of the samples was thoroughly investigated. A remarkable variation in the morphology and average particle size was observed with the increase in milling speed. For the samples ball milled at 200 and 300 rpm, the average particle size and hence magnetization were decreased due to the increased lattice strain, distortion and surface effects which became prominent due to the increase in the thickness of the outer magnetically dead layer. For the samples ball milled at 400, 500 and 600 rpm however, the average particle size and hence magnetization were increased. This increased magnetization was attributed to the reduced surface area to volume ratio that ultimately led to the enhanced ferromagnetic interactions. The maximum saturation magnetization (75 emu/g at 1 T applied field) observed for the sample ball milled at 600 rpm and the low value of coercivity makes this material useful as soft magnetic material.

측두하악관절에 발생한 색소성 융모결절성 활막염(Pigmented Villonodular Synovitis)의 영상진단 (Diagnostic Imaging of Pigmented Villonodular Synovitis of the Temporomandibular Joint.)

  • 송만용;이경희;이상철;이삼선;최순철;박태원;유동수
    • 치과방사선
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    • 제28권2호
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    • pp.505-519
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    • 1998
  • The occurrence of PVNS in the TMJ is very rare. We report a case of PVNS which was misdiagnosed as a parotid tumor at first. CT and conventional radiograph revealed a well defined mass demonstrating higher attenuation than adjacent soft tissue. Erosion and expansion of the cortical plate of the mandibular condyle and sclerotic change beneath the margin of the lesion were also shown. MRI demonstrated well defined mass of very low signal intensity on both Tl and T2-weighted images due to ferromagnetic effect of the high concentrated hemosiderin and clearly delineated the extent of the lesion. Histopathologic findings and characteristic appearance of the various imaging methods were described and the usefulness of these images for diagnosis and pretreatment evaluation of PVNS were also discussed.

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Selective Etching of Magnetic Layer Using CO/$NH_3$ in an ICP Etching System

  • Park, J.Y.;Kang, S.K.;Jeon, M.H.;Yeom, G.Y.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.448-448
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    • 2010
  • Magnetic random access memory (MRAM) has made a prominent progress in memory performance and has brought a bright prospect for the next generation nonvolatile memory technologies due to its excellent advantages. Dry etching process of magnetic thin films is one of the important issues for the magnetic devices such as magnetic tunneling junctions (MTJs) based MRAM. CoFeB is a well-known soft ferromagnetic material, of particular interest for magnetic tunnel junctions (MTJs) and other devices based on tunneling magneto-resistance (TMR), such as spin-transfer-torque MRAM. One particular example is the CoFeB - MgO - CoFeB system, which has already been integrated in MRAM. In all of these applications, knowledge of control over the etching properties of CoFeB is crucial. Recently, transferring the pattern by using milling is a commonly used, although the redeposition of back-sputtered etch products on the sidewalls and the low etch rate of this method are main disadvantages. So the other method which has reported about much higher etch rates of >$50{\AA}/s$ for magnetic multi-layer structures using $Cl_2$/Ar plasmas is proposed. However, the chlorinated etch residues on the sidewalls of the etched features tend to severely corrode the magnetic material. Besides avoiding corrosion, during etching facets format the sidewalls of the mask due to physical sputtering of the mask material. Therefore, in this work, magnetic material such as CoFeB was etched in an ICP etching system using the gases which can be expected to form volatile metallo-organic compounds. As the gases, carbon monoxide (CO) and ammonia ($NH_3$) were used as etching gases to form carbonyl volatiles, and the etched features of CoFeB thin films under by Ta masking material were observed with electron microscopy to confirm etched resolution. And the etch conditions such as bias power, gas combination flow, process pressure, and source power were varied to find out and control the properties of magnetic layer during the process.

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Permalloy 다층화와 CoZrNb 중간층이 CoCr/NiFe 매체의 기록특성에 미치는 영향 (Effects of Permalloy Multilayered Schemes and CoZrNb Intermediate Layer on Recording Characteristics of CoCr/NiFe Media)

  • 장평우;이택동;박관수
    • 한국자기학회지
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    • 제4권1호
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    • pp.20-24
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    • 1994
  • CoCr/NiFe 이중매체의 기록, 재생특성은 CoCr 기록층뿐만 아니라 NiFe연자성층의 자기적 특성에도 강하게 영향을 받는다. NiFe/Ge의 다층화로 CoCr/NiFe 매체의 기록감도와 재생전압을 증 가시킬 수 있었으며 이것은 연자성층의 높은 투자율과 CoCr기록층의 높은 수직이방성에 기인하였다. 그러나 연자성층의 투자율의 향상이 기록감도의 현저한 향상에 비해 재생전압의 현저한 증가를 가 져오지 못하는데 이것은 유한요소수치해석에서도 확인할 수 있었다. 반면에 NiFe/Ge 다층연자성박 막을 사용한 CoCr/NiFe 매체의 피크이동(peak shift)특성은 NiFe 단층연자성박막을 사용한 CoCr/NiFe 매체에 비해 악화되었다. 그러나 CoCr층과 NiFe층 사이에 10 nm의 CoZrNb 박막을 삽입시키면 높은 재생전압과 낮은 파크이동을 동시에 얻을 수 있었다. 이 연구에서 는 이러한 기록, 재생특성을 미 세구조와 연관시켜 검토하였다.

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Magnetic properties of Mn54Al46C2.44/Sm2Fe17N3 and Mn54Al46C2.44/Fe65Co35 composites

  • Qian, Hui-Dong;Si, Ping-Zhan;Lim, Jung Tae;Kim, Jong-Woo;Park, Jihoon;Choi, Chul-Jin
    • Journal of the Korean Physical Society
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    • 제73권11호
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    • pp.1703-1707
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    • 2018
  • Ferromagnetic ${\tau}-phase$ $Mn_{54}Al_{46}C_{2.44}$ particles were synthesized, and its composites with commercial $Sm_2Fe_{17}N_3$ and synthesized $Fe_{65}Co_{35}$ powders were fabricated. Smaller grain size than the single domain size of the $Mn_{54}Al_{46}C_{2.44}$ without obvious grain boundaries and secondary phases is the origin for the low intrinsic coercivity. It was confirmed that the magnetic properties of the $Mn_{54}Al_{46}C_{2.44}$ can be enhanced by magnetic exchange coupling with the hard magnetic $Sm_2Fe_{17}N_3$ and soft magnetic $Fe_{65}Co_{35}$. The high degrees of the exchange coupling were verified by calculating first derivative curves. Thermo-magnetic stabilities of the composites from 100 to 400 K were measured and compared. It was demonstrated that the $Mn_{54}Al_{46}C_{2.44}$ based composites containing $Sm_2Fe_{17}N_3$ and $Fe_{65}Co_{35}$ could be promising candidates for future permanent magnetic materials with the proper control of purity, magnetic properties, etc.