• 제목/요약/키워드: Spin

검색결과 3,823건 처리시간 0.03초

Electron Spin Resonance Line-widths of Carbon Nanotubes based on the Hyperfine Interaction

  • Park, Jung-Il;Cheong, Hai-Du
    • 한국자기공명학회논문지
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    • 제19권1호
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    • pp.11-17
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    • 2015
  • The Kubo formalism and utilizing the projection operator technique (POT) introduced by Kawabata, the electron spin resonance (ESR) line-shape formula for carbon nanotubes through the hyperfine interaction introduced earlier in terms of POT. We can see that the line-width decreases exponentially as the temperature increases. The spin relaxation time show gradual decrease as magnetic field becomes larger. The analysis reveals the peculiarities in spin relaxation inherent to one dimensional system at low temperature and weak magnetic fields. Thus, the present technique is considered to be more convenient to explain the carbon nanotubes as in the case of other optical transitions.

Generalization of the Curie-Weiss Model to the D-dimensional Spin System

  • Hyung-june Woo;Eun Kyung Lee;Eok-Kyun Lee
    • Bulletin of the Korean Chemical Society
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    • 제14권4호
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    • pp.485-487
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    • 1993
  • The critical behavior of the classical D-dimensional spin model (D${\ge}$2), which is intermediate model that link up the Ising (D = 1) and the spherical model (D = ${\infty}$), is studied for the case of constant coupling interaction independent of the spin-spin distance (Curie-Weiss model). Analytical results show that the critical behavior of the present model is in quantitative agreement with the prediction of the phenomenological mean-field theory independent of D. Critical temperature is calculated to be T$_c$=k/JD. This gives a quantitative explanation of the relationship between the spin degree of freedom and the critical temperature.

비자성 불순물을 갖는 $CuF_{2}.2H_{2}O$의 수소 핵자기완화 연구 ($^{1}H$ Nuclear Magnetic Relaxation in Impure $CuF_{2}.2H_{2}O$)

  • C. H. Lee;C. E. Lee;S. J. Noh
    • 한국자기학회지
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    • 제5권5호
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    • pp.854-857
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    • 1995
  • 비자성 분순물을 갖는 $CuF_{2}.2H_{2}O$의 수소 핵자기공명을 77-295 K의 온도범위에서 수행하였다. 그 결과 수소의 스핀-격자 완화율을 지배하는 메카니즘이 구리 전자 스핀의 재주넘기(filp)와 전자-포논 상호작용(Raman process)의 변조에 의한 것임을 알 수 있었다. 또한 전자 스핀 재주넘기에 대한 교환에너지 $1.8(\pm0.04)$ K를 구할 수 있었다.

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Using Electron-beam Resists as Ion Milling Mask for Fabrication of Spin Transfer Devices

  • Nguyen Hoang Yen Thi;Yi, Hyun-Jung;Shin, Kyung-Ho
    • Journal of Magnetics
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    • 제12권1호
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    • pp.12-16
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    • 2007
  • Magnetic excitation and reversal by a spin polarized current via spin transfer have been a central research topic in spintronics due to its application potential. Special techniques are required to fabricate nano-scale magnetic layers in which the effect can be observed and studied. This work discusses the possibility of using electron-beam resists, the nano-scale patterning media, as ion milling mask in a subtractive fabrication method. The possibility is demonstrated by two resists, one positive tone, the ZEP 520A, and one negative tone, the ma-N2403. The advantage and the key points for success of this process will be also addressed.

Theory of Generation Linewidth in Spin-torque Nano-sized Auto-oscillators

  • Kim, Joo-Von;Tiberkevich, Vasil;Slavin, Andrei N.
    • Journal of Magnetics
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    • 제12권2호
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    • pp.53-58
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    • 2007
  • Theory of the generation linewidth of a current-driven spin-torque magnetic nano-oscillator in the presence of thermal fluctuations has been developed and a simple analytical formula for the generation linewidth in the supercritical regime of generation has been derived. It is shown that the strong dependence of the oscillator frequency on the precession power leads to substantial broadening of the generation linewidth of a spin-torque oscillator compared to the case of a linear oscillator, i.e. an oscillator with power-independent generation frequency. The relation between the nonlinearity-induced broadening of the generation linewidth and the nonlinearity-induced increase of the phase-locking band of a spin-torque oscillator to an external microwave signal has been revealed. The derived expression for the generation linewidth predicts a linewidth minimum when the nano-contact is magnetized at a certain angle to its plane, at which the nonlinear frequency shift vanishes. This result is in good agreement with recent experiments.

제도론 관점에서 공공기술기반 창업에 영향을 미치는 요인에 관한 연구 (A Study on the Factors Influencing Research-based Spin-Off from the Perspective of Institutional Theory)

  • 임인종;이정환;손호성
    • 시스템엔지니어링학술지
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    • 제19권1호
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    • pp.14-28
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    • 2023
  • The spin-off where the principal technology developers take the lead in the active and initiative pursuit of the commercialization of technologies is increasingly drawing attention, breaking away from the traditional means through the technology transfer or licensing of the public technologies created by the developers. This study aimed to determine the reasons for such differences from the perspective of the institutional theory. The results show that only the start-up support system, profit distribution system for researchers, degree of participation in the technology marketing, entrepreneurship of researchers, the use of start-up systems affected the number of start-ups of spin-off companies. Furthermore, an analysis of success factors and a study on the exploration of success paths for the RSOs will also be required

일본의 대학 발 벤처와 산학제휴 촉진시책 (Japanese University Spin-off & Collaboration between Industry & University)

  • 이덕훈
    • 국제지역연구
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    • 제13권1호
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    • pp.287-308
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    • 2009
  • 과학집약형 속성을 지닌 첨단산업(IT산업이나 바이오산업)의 경우, 기존의 전통적 산업계에서 쉽게 접근 못하기 때문에, 대학 발 벤처의 출현 그 자체는 무엇보다도 중요한 척도라고 하겠다. 본 연구 에서는 정부의 정책적 요인에 영향을 준 산학제휴촉진시책 요인과 그 배경을 중심으로 접근하려고 한다. 정부의 정책적요인은 그 나라의 사회적 요인의 특성과 깊은 관계가 있으므로 일본의 대학 발 벤처를 발전시킨 특성과 일본정부와 기업의 의사결정과정과 그리고 과학 집약적 특성을 가진 대학 발 벤처의 일본적 특징을 중심으로 분석하기로 한다.

Dynamics of Transverse Magnetic Domain Walls in Rectangular-shape Thin-film Nanowires Studied by Micromagnetic Simulations

  • Lee, Jun-Young;Choi, Sang-Kook;Kim, Sang-Koog
    • Journal of Magnetics
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    • 제11권2호
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    • pp.74-76
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    • 2006
  • Dynamic behaviors of transverse domain walls (TDWs) in rectangular shaped thin-film magnetic nanowires with different widths under applied magnetic fields less than the Walker field were studied by micromagnetic simulations. It was found that the velocity of stable TDWs in the viscous region increases from 147 to 419 m/s and their mass decreases from $6.24{\times}10^{-23}\;to\;2.70{\times}10^{-23}kg$ with increasing strength of the applied magnetic field ranging from 5 to 20 Oe for the nanowire with a dimension of 10 nm in thickness and $5{\mu}m$ in length, and 50 nm in width. With increasing the width of nanowires from 50 to 125 nm at a specific field strength of 5 Oe, the TDW's velocity also increases from 147 to 246 m/s and its mass decreases from $6.24{\times}10^{-23}\;to\;5.91{\times}10^{-23}kg$.

Controlling Spin State of Magnetic Molecules by Oxygen Binding Studied Using Scanning Tunneling Microscopy

  • Lee, Soon-hyeong;Chang, Yun Hee;Kim, Howon;Kim, Kyung Min;Kim, Yong-Hyun;Kahng, Se-Jong
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.145.1-145.1
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    • 2016
  • Binding and unbinding between molecular oxygen and metallo-porphyrin is a key process for oxygen delivery in respiration. It can be also used to control spin state of magnetic metallo-porphyrin molecules. Controlling and sensing spin states of magnetic molecules in such reactions at the single molecule level is essential for spintronic molecular device applications. Here, we demonstrate that spin states of metallo-porphyrin on surfaces can be controlled over by binding and unbinding of oxygen molecule, and be sensed using scanning tunneling microscopy and spectroscopy. Kondo localized state of metallo-porphyrin showed significant modification by the binding of oxygen molecule, implying that the spin state was changed. Our density functional theory calculation results explain the observations with the hybridization of unpaired spins in d and ${\pi}^*$ orbitals of metallo-porphyrin and oxygen, respectively. Our study opens up ways to control molecular spin state and Kondo effect by means of molecular binding and unbinding reactions on surfaces.

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시간에 따라 변화는 회전 각속도를 가지는 원통용기내의 스핀업 (Spin-up in a Cylinder with a Time-Dependent Rotation Rate)

  • 김경석;곽호상;현재민
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집E
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    • pp.456-462
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    • 2001
  • Comprehensive numerical computations are made of a homogenous spin-up in a cylindrical cavity with a time-dependent rotation rate. Numerical solutions are acquired to the governing axisymmetric cylindrical Navier-Stokes equation. A rotation rate formula is ${\Omega}_f={\Omega}_i+{\Delta}{\Omega}(1-{\exp}(-t/t_c))$. If $t_c$ is large, it implies that a rotation change rate is small. The Ekman number, E, is set to $10^{-4}$ and the aspect ratio, R/H, fixed to I. For a linear spin-up(${\epsilon}<<$), the major contributor to spin-up in the interior is not viscous-diffusion term but inviscid term, especially Coriolis term, though $t_c$ is very large. The viscous-diffusion term only works near sidewall. But for spin-up from rest, when $t_c$ is very large, viscous-diffusion term affects interior area as well as sidewall, initially. So azimuthal velocity of interior for large $t_c$ appears faster than that of interior for relatively small $t_c$. However, the viscous-diffusion term of interior decreases as time increases. Instead, inviscid term appears in the interior.

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