• 제목/요약/키워드: Giant Magnetoresistance(GMR)

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A study on the magnetic properties and microstructure of spin-valve type multilayer for giant magnetoresistance (스핀밸브형 거대자기저항 다층박막의 자기적 특성 및 미세구조에 관한 연구)

  • 노재철;이두현;이명신;윤대호;서수정
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.8 no.1
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    • pp.73-82
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    • 1998
  • The exchange anisotropy is the unidirectional magnetic anisotropy which comes from exchange interaction between antiferromagnetic layer and ferromagnetic layer. The application of this phenomenon to MR read head and spin-valve type GMR (Giant Magnetoresistance) head has been studied extensively. In our study, we intended to apply exchange anisotropy of NiO/NiFe bilayer to spin-valve type GMR element. Above all, we studied the exchange anisotropy of NiO/NiFe bilayer, and focused especially on the effect of NiO deposition condition. And we found that Ar pressure during NiO deposition was crucial factor for the exchange anisotropy of NiO/NiFe bilayer. The lower the Ar pressure is, the better the characteristics of exhange anisotropy is. Then, we applied this optimum condition of NiO/NiFe bilayer to spin-valve type GMR element. Finally we got spin-valve type GMR element which had 3.6 % MR ratio, 16 Oe switching field, and 0.25 %/Oe sensitivity.

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Studies on the Fabrication and Properties of $La_{1-x}Ca_xMnO_3$ by Glycine-Nitrate Process and Solid State Reaction Method fort the CMR sensor (CMR sensor 응용을 위한 자발착화 연소합성법(GNP)과 고상반응법에 의한 $La_{1-x}Ca_xMnO_3$ 분말의 제조 및 물성에 관한 연구)

  • Kang, Young-Chul;Park, Sung
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.05a
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    • pp.137-141
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    • 1999
  • 금속 다층박막과 미세입상 합금박막에서 발견된 Giant Magnetoresistance(GMR) 현상에 고무되어 최근에는 50년대에 밝혀졌던 산화물 자기저항 재료에 관하여 새롭게 연구하고 있으며 perovskite 구조를 가지는 La$_{1-x}$ Ca/xub x/MnO$_{3}$ 박막에서 큰 자기저항을 얻었으며 이를 Colossal Magentoresistance (CMR) 이라 부른다. 본 연구에서는 La$_{1-x}$ Ca/xub x/MnO$_{3}$ 분말을 하소온도를 700-90$0^{\circ}C$로 변화시킨 고상반응법과 자발착화연소합성법(Glycine-Nitrate Process) 으로 각각 제조하였으며 비교 분석하였다. TG-DTA을 이용하여 불순물과 미반응 물질을 확인하여 적당한 하소 온도를 결정하였고 XRD를 이용하여 결정상을 분석하였다. 주사전자현미경(SEM)으로 각각 제조된 분말의 하소후 입자의 크기를 비교하였다. GNP법으로 합성한 경우가 고상반응법을 이용한 경우보다 입자의 크기가 submicron 단위로 미세하고 균질하며 고순도의 perovskite 구조를 갖는 La$_{1-x}$ Ca/xub x/MnO$_{3}$ 분말을 얻을 수 있었다.었다.

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Angular modulation of the GMR at the 2nd AFM

  • S. J. Kang;Kim, K. Y.;W. T. Ye;Lee, J.
    • Proceedings of the Korean Magnestics Society Conference
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    • 2000.09a
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    • pp.307-314
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    • 2000
  • In order to study the effect of the magnetic anisotropy on the giant magnetoresistance (GMR), the angle dependent magnetoresistance (MR) was measured. The experimental results show that the maximum MR ratio depends on the angle between the direction of the applied field and that of the easy axis. The angular modulation of the MR ratio can be explained by the alignments of the two 'effective' magnetization vectors that are bound to their own easy axes. The typical property of MR loops at 2$\^$nd/ antiferromangtic maximum (AFM) such as two maxima was discussed in relation with the magnetic anisotropy (MA). The simulated results under an assumption of the two in-plane easy axes, which exist in the sample, were compared with the experiments.

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Distribution of Magnetic Field Depending on the Current in the μ-turn Coil to Capture Red Blood Cells (적혈구 포획용 미크론 크기 코일에 흐르는 전류의 크기에 따른 자기장 분포 특성)

  • Lee, Won-Hyung;Chung, Hyun-Jun;Kim, Nu-Ri;Park, Ji-Soo;Lee, Sang-Suk;Rhee, Jang-Roh
    • Journal of the Korean Magnetics Society
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    • v.25 no.5
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    • pp.162-168
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    • 2015
  • The ${\mu}$-turn coil having a width of ${\mu}m$ on the GMR-SV (giant magnetoresistance-spin valve) device based on the antiferromagnetic IrMn layer was fabricated by using the optical lithography process. In the case of GMR-SV film and GMR-SV device, the magnetoresistance ratios and the magnetic sensitivities are 4.4%, 2.0%/Oe and 1.6 %, 0.1%/Oe, respectively. In the y-z plane the distribution of magnetic field of GMR-SV device and $10{\mu}$-turns coil which put under the several magnetic bead(MB)s with a diameter of $1{\mu}m$ attached to RBC (red blood cell) was analyzed by the computer simulation using the finite element method. When the AC currents of 20 kHz from 0.1 mA to 10.0 mA flow to the 10 turns ${\mu}$-coil, the magnetic field at the position of $z=0{\mu}m$ at the center of coil was calculated from $30.1{\mu}T$ to $3060{\mu}T$ in proportion to the current. The magnetic field at the position of $z=10{\mu}m$ was decreased to one-sixth of that of $z=0{\mu}m$. It was confirmed that the $10{\mu}$-turn coil having enough magnitude of magnetic field for the capture of RBC is possible to use as a biosensor for the detection of magnetic beads attached to RBC.

Modeling of a linear GMR Isolator Utilizing Spin Valves (스핀밸브를 이용한 선형 GMR 아이솔레이터의 모델링)

  • Park, S.;Jo, S.
    • Journal of the Korean Magnetics Society
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    • v.14 no.6
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    • pp.232-235
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    • 2004
  • Linear GMR isolator which is profitable for transmitting analog signal was modeled and the output voltage and current in relation to the input current were investigated. GMR isolator modeling was divided into two parts, namely magnetic and electric parts. The flow chart of the modeling was drawn in which the MR curve of the spin valves were incorporated to obtain the electrical voltage output. For magnetic modeling, 3-dimensional model of planar coil was analyzed by FEM method to obtain the magnetic field strength corresponding to the input current. Coil efficiency of the planar coil having magnetic core layer was shown to have about 1.5 times larger than that of the coil without the magnetic core layer. The feedback coil current(output current) corresponding to the input coil current was calculated to be within ${\pm}$0.25 mA of the linear fitting function of I$\_$out/= I$\_$in/-5 mA. Also, the response time and output waveforms were obtained when the coil current was a rectangular waveform. The rise time and fall time was 6 ${\mu}\textrm{s}$, respectively when the slew rate of the op-amp was 0.3 V/${\mu}\textrm{s}$.

EFFECT OF THE ADDITION OF Ni ON GIANT MAGNETORESISTANCE OF Cu-Co AGED RIBBONS

  • Kim, I.J.;Echigoya, J.;Fukamichi, K.;Shimada, Y.
    • Journal of the Korean Magnetics Society
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    • v.5 no.5
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    • pp.456-460
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    • 1995
  • Giant magnetoresistance(GMR) of $Cu_{85-x}Co_{15}Ni_{x}$ melt-spu ribbons is closely correlated with the microstructure produced by the spinodal decomposition. The solid solution range is extanded by the replacement of Cu by Ni in the as-quenched state. The wavelengths obtained by subsequent isothermal aging in Cu-Co-Ni ribbons are shorter than those in Cu-Co binary ribbons, resulting in the increase of the surface-to-volume ratio. The largest MR ratio of 8 % in high field has been achieved in the $Cu_{80}Co_{15}Ni_{5}$ aged ribbon. The field dependence of MR ratio in low fields becomes larger with the Ni content.

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2D Location Estimation of a Magnetized Tip Using Arrayed GMR Sensors (GMR센서 배열을 이용한 자석팁의 2D 위치 추정)

  • Lee, S.C.;Kim, J.K.;Ahn, J.H.;Kim, H.Y.
    • Journal of Sensor Science and Technology
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    • v.28 no.6
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    • pp.395-401
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    • 2019
  • This paper proposes a method for estimating the location of a magnetized tip that is inside a non-transparent space or body by using arrayed giant magnetoresistance (GMR) sensors. In general, an object located in such an opaque space can be detected using X-rays, magnetic fields, ultra-sonic sensors, etc., depending on its characteristics. X-ray is mostly used for medical purposes but frequent exposure to it could cause harm to patients as well as doctors. In this study, how well a GMR sensor is applicable instead of an X-ray is investigated. The sensor's voltage output is experimentally fitted to distance with a relationship of 3rd degree polynomial. To detect a small magnetized tip with 900 Oe inside a human body, a 2×2 arrayed GMR sensor and a location estimation algorithm based on information acquired from four sensors is developed. Evaluation tests show that the suggested method is applicable to limited cases with a distance less than 33-55 mm, and the location of a magnet tip is estimated relatively well with an error less than 1.5 mm.

Giant Magnetoresistance and Applications (거대자기저항 및 응용)

  • Lee, Seong-Rae
    • Ceramist
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    • v.2 no.4
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    • pp.35-46
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    • 1999
  • GMR 재료의 응용은 매우 광범위하며 크게 세 분야로 대별할 수 있다. 첫째는 자기 재생 헤드로서 $10Gbit/in^2$ 이상의 고밀도 자기기록 기술에서는 필수 불가결한 재료이다. 둘째는 다양한 분야에 응용될 고감도 자기센서 분야이며, 셋째는 집접화된 자기저항메모리(MRAM) 분야이다. GMR 센서를 사용한 자기헤드는 이미 시판되고 있고 기존의 AMR 재료인 퍼멀로이에 비하여 3~20배 이상으로 신호준위가 크고 사용온도 범위에서 선형성 및 열적안정성도 우수한 것으로 보고되고 있다. MRAM의 경우에는 스핀밸브 GMR 및 TMR 소자를 사용한 연구가 한창 진행중이다. GMR 현상은 발견 된지 고작 10년 밖에 되지 않았으나 GMR 자기센서는 이미 상업적으로 개발되어 응용되고 있다. 이러한 실질적인 응용에 유리한 고지를 선점하고 있는 것은 이방성결합형 스핀밸브 다층박막 구조로서 그 내구성과 특성 향상을 위한 연구가 다양하게 시도되고 있다. GMR현상의 발견은 자성재료분야 연구 및 응용에 있어 새로운 전기를 마련하였으며 특히 자성과 이동현상이 연계된 분야로서 소위 "Magneto-electronics" 또는 "Spintronics" 라는 [51] 새로운 미래기술의 장이 열리고 있다. 현재의 반도체 중심의 "Microelectronics" 기술에서는 전자와 전자공공을 이용하는 기술이라면 "Magneto-electronics" 기술에서는 스핀${\uparrow}$ 및 스핀${\downarrow}$의 두 종류의 전자를 이용하게 된다. 자성체와 도체를 접목한 스핀 트랜지스터 또는 자성체와 반도체를 접목한 스핀-polarized FET(field effect transistor) 등의 새로운 개념의 magnetoelectronics 소자가 창출되고 있다. 따라서 자기이동 현상의 기초 연구, 재료 측면의 연구 및 헤드, MRAM, 센서 등의 응용기술연구가 국내에서 활발하게 이루어져 21세기 새로운 자성전자(magneto-electronics)소자 응용에 경쟁력을 키워야 할 것이다.

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Detection Property of Red Blood Cell-Magnetic Beads Using Micro Coil-Channel and GMR-SV Device

  • Park, Ji-Soo;Kim, Nu-Ri;Jung, Hyun-Jun;Khajidmaa, Purevdorj;Bolormaa, Munkhbat;Lee, Sang-Suk
    • Proceedings of the Korean Magnestics Society Conference
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    • 2015.05a
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    • pp.161-163
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    • 2015
  • The micro device, coil, and channel for the biosensor integrated with the GMR-SV device based on the antiferromagnetic IrMn layer was fabricated by the light lithography process. When RBCs coupled with several magnetic beads with a diameter of $1{\mu}m$ passed on the micro channel, the movement of RBC + ${\mu}Beads$ is controlled by the electrical AC input signal. The RBC + ${\mu}Beads$ having a micro-magnetic field captured above the GMR-SV device is changed as the output signals for detection status. From these results, the GMR-SV device having the width magnitude of a few micron size can be applied as the biosensor for the analysis of a new magnetic property as the membrane's deformation of RBC coupled to magnetic beads.

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The Detection of Magnetic Properties in Blood and Nanoparticles using Spin Valve Biosensor (스핀밸브 바이오 센서를 이용한 혈액과 나노입자의 자성특성 검출)

  • Park, Sang-Hyun;Soh, Kwang-Sup;Ahn, Myung-Cheon;Hwang, Do-Guwn;Lee, Sang-Suk
    • Journal of the Korean Magnetics Society
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    • v.16 no.3
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    • pp.157-162
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    • 2006
  • In this study, a high sensitive giant magnetoresistance-spin valve (GMR-SV) bio-sensing device with high linearity and very low hysteresis was fabricated by photolithography and ion beam deposition sputtering system. Detection of the Fe-hemoglobin inside in a red blood and magnetic nanoparticles using the GMR-SV bio-sensing device was investigated. Here a human's red blood includes hemoglobin, and the nanoparticles are the Co-ferrite magnetic particles coated with a shell of amorphous silica which the average size of the water-soluble bare cobalt nanoparticles was about 9 nm with total size of about 50 nm. When 1 mA sensing current was applied to the current electrode in the patterned active GMR-SV devices with areas of $5x10{\mu}m^2 $ and $2x6{\mu}m^2 $, the output signals of the GMRSV sensor were about 100 mV and 14 mV, respectively. In addition, the maximum sensitivity of the fabricated GMR-SV sensor was about $0.1{\sim}0.8%/Oe$. The magnitude of output voltage signals was obtained from four-probe magnetoresistive measured system, and the picture of real-time motion images was monitored by an optical microscope. Even one drop of human blood and nanopartices in distilled water were found to be enough for detecting and analyzing their signals clearly.