• 제목/요약/키워드: transverse magnetic field

검색결과 134건 처리시간 0.029초

Co계 아몰퍼스리본을 이용하여 제작한 마안더패턴의 고주파 임피던스특성 (High Frequency Impedance of Meander Pattern Fabricated by Co-base Amorphous Ribbon)

  • 신광호;박경일;사공건;송재연;김영학
    • 한국자기학회지
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    • 제13권4호
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    • pp.160-164
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    • 2003
  • 연자성이 우수한 Co계 아몰퍼스리본을 리소그래피와 에칭을 통하여 미안더타입(meande, type)의 미소패턴으로 가공하고 표피효과가 현저하게 나타나는 300 KHz∼l ㎓의 주파수영역에서 고주파임피던스, 저항, 인덕턴스에 미치는 외부자기장의 영향을 조사하였다. 제작한 아몰퍼스리본의 미안더패턴은 자기장중 열처리를 통하여 폭방향으로 자기용이축이 유도되어 있었으며 패턴의 길이방향으로 인가된 외부자기장에 대하여 민감한 임피던스의 변화를 나타내었다. 임피던스는 약 13 Oe부근의 인가자기장에서 최대값을 나타내었으며 50 MHz에서 11 Oe의 인가 자기장에 대하여 약 210%의 임피던스 변화율을 나타내었다.

펄스자장을 이용한 고이방화 Nd-Fe-B자석의 종축자장성형방법 (Axial Pressing Method Using Pulse Magnetizing Field for the Preparation of Nd-Ee-B Sintered Magnets)

  • 김동환;강병길;장동열;김승호;김상면;장태석
    • 한국자기학회지
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    • 제13권4호
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    • pp.182-186
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    • 2003
  • 펄스자장종축성형법(pulse die press, PDP)을 이용하여 32 wt%RE-67 wt%TM-1 wt%B(RE: 희토류원소, TM: 30천이금속)조성을 갖는 소결자석을 제조함에 있어서 자장성형시 분말의 탭밀도, 성형밀도, 인가자장세기 및 인가방법의 변화에 따라 얻어지는 자석의 배향율과 감자곡선상의 각형성 변화를 조사하였다. 출발합금 제조방법으로서 strip casting process에 의하여 $\alpha$-Fe 편석없이 미세하고 균일한 조직을 갖는 합금 flake가 얻어졌고, 합금 flake를 수소처리한 후 고압가스를 이용한 건식분쇄방법(jet mill)에 의하여 평균입도, 표준편차가 각각 3.65 $\mu\textrm{m}$, 1.39인 미세하고 균일한 입도의 분말로 제조하였다. 제조된 분말은 30-50 kOe치 고펄스자장에 의하여 분말을 배향시키고 동일한 펄스자장을 인가하면서 종축성형을 실시함으로써 배향율을 향상시킬 수 있었다. 결과적으로 32 wt%RE조성의 분말을 이용하여 종전의 자장성형방법인 TDP(transverse die press)와 본 연구에서 제안된 PDP에 의하여 제조된 자석의 최대자기에너지적은 각각 42.0 MGOe 및 44.8 MGOe가 얻어져, PDP가 분말의 배향율과 감자곡선상의 각 형성을 향상시키는데 효과적인 자장성형방법임을 알 수 있었다.

($^{11}$B NMR study of vortex dynamics in LuNi$_2$B$_2$C

  • Lee, K.H.;Seo, S.W.;Kim, D.H.;Khang, K.H.;Seo, H.S.;Hwang, C.S.;Cho, B.K.;Lee, Moo-Hee
    • 한국초전도학회:학술대회논문집
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    • 한국초전도학회 2000년도 High Temperature Superconductivity Vol.X
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    • pp.107-110
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    • 2000
  • ($^{11}$B NMR measurements have been performed on single crystals of LuNi$_2$B$_2$C superconductor to investigate vortex lattice structures and dynamical behavior. The spectrum in the superconducting state is significantly broadened by local field inhomogeneity due to the vortex lattice and the peak point of the spectrum shifts toward low magnetic field due to the imperfect field penetration. The linewidth of the spectrum reflecting local field variation is much smaller than expected for conventional vortex lattices and shows peculiar increase at low temperature. Furthermore, the transverse relaxation rate, 1/T$_2$, probing the slow motion of vortices, exhibits a single peak as temperature decreases. These prominent results highlight significant fluctuation of vortices even for this low T$_c$, and nearly isotropic 3D superconductor.

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움직이는 자기장을 이용한 10 MV X-선의 선량변조에 관한 몬테칼로 계산 (Monte Carlo Calculation on the Dose Modulation Using Dynamic Magnetic Fields for 10 MV X-rays)

  • 김기환;오영기;신교철;김진기;정동혁;김정기;조문준;김선영
    • 한국의학물리학회지:의학물리
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    • 제18권4호
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    • pp.221-225
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    • 2007
  • 움직이는 자기장을 이용한 팬텀 속 선량 변조에 관한 몬테칼로 계산을 수행하였다. 본 연구의 목적은 빔 축을 따라 이동하는 횡 자기장을 이용하여 특정감이 영역에 균일한 선량을 얻는 것이다. 이를 위해 두 가지 구성 즉, 깊이 방향으로 일정한 속도 그리고 점차 감소하는 속도를 가지는 자기장에 대해 깊이 선량율을 구하였다. 연속적 움직임에 대한 근사로서 단계별 이동과 시간인자를 도입하였다. 위치별 정지한 자기장 대한 김이 선량율 자료에 최소제곱법을 적용하여 자기장 위치에 따른 최적의 시간인자를 구하였다. 몬테칼로 계산결과를 통하여 자기장의 속도를 변화시킴으로써 평탄한 선량 분포를 얻을 수 있음을 확인하였다. 이 때 3 T 자기장 세기에 대한 계산결과 평탄 영역의 선량은 자기장이 없을 때에 비해 약 10.1% 증가하는 것으로 나타났다.

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Scattering characteristics of metal and dielectric optical nano-antennas

  • Ee, Ho-Seok;Lee, Eun-Khwang;Song, Jung-Hwan;Kim, Jinhyung;Seo, Min-Kyo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.76.1-76.1
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    • 2015
  • Optical resonances of metallic or dielectric nanoantennas enable to effectively convert free-propagating electromagnetic waves to localized electromagnetic fields and vice versa. Plasmonic resonances of metal nanoantennas extremely modify the local density of optical states beyond the optical diffraction limit and thus facilitate highly-efficient light-emitting, nonlinear signal conversion, photovoltaics, and optical trapping. The leaky-mode resonances, or termed Mie resonances, allow dielectric nanoantennas to have a compact size even less than the wavelength scale. The dielectric nanoantennas exhibiting low optical losses and supporting both electric and magnetic resonances provide an alternative to their metallic counterparts. To extend the utility of metal and dielectric nanoantennas in further applications, e.g. metasurfaces and metamaterials, it is required to understand and engineer their scattering characteristics. At first, we characterize resonant plasmonic antenna radiations of a single-crystalline Ag nanowire over a wide spectral range from visible to near infrared regions. Dark-field optical microscope and direct far-field scanning measurements successfully identify the FP resonances and mode matching conditions of the antenna radiation, and reveal the mutual relation between the SPP dispersion and the far-field antenna radiation. Secondly, we perform a systematical study on resonant scattering properties of high-refractive-index dielectric nanoantennas. In this research, we examined Si nanoblock and electron-beam induced deposition (EBID) carbonaceous nanorod structures. Scattering spectra of the transverse-electric (TE) and transverse-magnetic (TM) leaky-mode resonances are measured by dark-field microscope spectroscopy. The leaky-mode resonances result a large scattering cross section approaching the theoretical single-channel scattering limit, and their wide tuning ranges enable vivid structural color generation over the full visible spectrum range from blue to green, yellow, and red. In particular, the lowest-order TM01 mode overcomes the diffraction limit. The finite-difference time-domain method and modal dispersion model successfully reproduce the experimental results.

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Connection between a Small-Scale Emerging Island and Double Arc Loops Producing a M6.5 Flare in Active Region 12371

  • Kang, Jihye;Inoue, Satoshi;Moon, Yong-Jae;Magara, Tetsuya;Kusano, Kanya
    • 천문학회보
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    • 제42권2호
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    • pp.81.3-81.3
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    • 2017
  • In this paper, we report a small-scale emerging island and double arc loops, which are associated with a M6.5 flare, in Active Region 12371. We investigate the spatial and temporal changes of both photospheric magnetic fields using SDO/HMI data and coronal magnetic structures obtained from nonliner force-free field (NLFFF) extrapolation. From the vector magnetograms, we find a small-scale emerging island near the main polarityy inversion line about three hours before the flare. The island has a strong shear angle, which is determined by difference between transverse component of observed field and potential field, of around 90 degrees. Furthermore, the NLFFF well reproduces a sigmoidal structure seen in SDO/AIA 94, which is consistent with the double arc loops configuration suggested by Ishiguro and Kusano (2017) who introduced a magnetic configuration showing the double arc instability. The observed emerging island is located among the double arc loops, which is also supproted by their model. Finally, there was an eruption (M6.5 flare) associated with the loops. We discuss a possible role of the double arc instability for the eruption.

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Free vibration analysis of magneto-rheological smart annular three-layered plates subjected to magnetic field in viscoelastic medium

  • Amir, Saeed;Arshid, Ehsan;Maraghi, Zahra Khoddami
    • Smart Structures and Systems
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    • 제25권5호
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    • pp.581-592
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    • 2020
  • Magneto-rheological fluids and magneto-strictive materials are of the well-known smart materials which are used to control and reduce the vibrations of the structures. Vibration analysis of a smart annular three-layered plate is provided in this work. MR fluids are used as the core's material type and the face sheets are made from MS materials and is assumed they are fully bonded to each other. The structure is rested on visco-Pasternak foundation and also is subjected to a transverse magnetic field. The governing motion equations are derived based on CPT and employing Hamilton's principle and are solved via GDQ as a numerical method for various boundary conditions. Effect of different parameters on the results are considered and discussed in detail. One of the salient features of this work is the consideration of MR fluids as the core, MS materials as the faces, and all of them under magnetic field. The outcomes of this study may be led to design and create smart structures such as sensors, actuators and also dampers.

7 T MRI에서의 다양한 RF 코일에 대한 B1+ 비교 (B1+ Comparison for Different RF Coils at 7 T MRI)

  • 김홍준;유형석
    • 한국전자파학회논문지
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    • 제23권8호
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    • pp.1010-1013
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    • 2012
  • 정 자장($B_0$)의 세기가 7 T(Tesla) 고자기장 MRI(Magnetic Resonance Imaging) 시스템은 정 자장의 세기가 1.5 T 또는 3 T MRI 시스템에 비하여 인가된 RF(Radio Frequency) 필드의 높은 불균질성을 보여준다. 이러한 문제점를 극복하기 위한 한 방법으로써, 관심 영역에서의 RF 자장이 균일하도록 RF 코일의 각 요소로 들어가는 최적화된 전류의 크기와 위상 값을 얻기 위해서 convex 최적화 방법이 사용된다. 이러한 방법을 7 T MRI 시스템에 다양한 RF 코일에 적용하여 각각의 $B_1^+$ 필드 값을 비교하여 그 성능을 파악하였다.

자기장 및 열하중을 받는 복합재료 원통셸의 진동해석 (Vibration Analysis of Composite Cylindrical Shells Subjected to Electromagnetic and Thermal Fields)

  • 박상윤;김성균;최종운;송오섭
    • 한국소음진동공학회논문집
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    • 제22권8호
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    • pp.791-799
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    • 2012
  • In this paper free vibration analysis of symmetric and cross-ply elastic laminated shells based on FSDT was performed through discretization of equations of motion and boundary condition. Structural model of laminated composite cylindrical shells subjected to a combination of magnetic and thermal fields is developed via Hamilton's variational principle. These coupled equations of motion are based on the electromagnetic equations(Faraday, Ampere, Ohm, and Lorenz equations) and thermal equations which are involved in constitutive equations. Variations of dynamic characteristics of composite shells with applied magnetic field, temperature gradient, and stacking sequence are investigated and pertinent conclusions are derived.

자기장을 받는 복합재료 원통쉘의 동적특성 연구 (Study on the Dynamic Characteristics of Composite Shells Subjected to an Electromagnetic Field)

  • 박상윤;김성균;최종운;송오섭
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2012년도 춘계학술대회 논문집
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    • pp.748-754
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    • 2012
  • In this paper free vibration analysis of symmetric and cross-ply elastic laminated shells based on FSDT was performed through discretization of equations of motion and boundary condition. Model of laminated composite shells subjected to a combination of magnetic and thermal fields is developed. These coupled equations of motion are based on the electromagnetic equations (Faraday, Ampere, Ohm, and Lorenz equations) and thermal equations which are involved in constitutive equations. Dynamic characteristic of composite shells for change of magnetic fields is investigated.

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