• 제목/요약/키워드: density inversion

검색결과 131건 처리시간 0.018초

밀도 반전 없는 증폭 매질에서 광펄스 군속도의 제어 과정 분석 (Analysis on optical pulse propagation in atomic medium for amplification without inversion)

  • 김행화;김경대;이림;안문희;김중복
    • 한국광학회지
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    • 제14권5호
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    • pp.483-490
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    • 2003
  • EIT 구도에 비결맞음 광펌핑(incoherent optical pumping) 과정을 더하여 구성된 밀도 반전 없는 광증폭(Amplification without inversion; AWI)매질에서 광펄스의 전파 과정에 대한 이론적인 분석을 실시하였다 펌핑광의 세기를 변화시킴으로써 광펄스의 군속도를 제어할 수 있음을 실험적으로 관측한 논문[Kim et al., J. Phys. B, 36 (2003)]을 이론적으로 설명하기 위차여 5 준위 원자계를 모형으로 선택하여 밀도행렬방정식을 적용하였다. 특히,본 연구에서 분석한 AWI 구도는 지금까지 연구되어 온 구도와 달리 EIT 구도 밖의 독립적인 에너지 준위들 사이의 전이선을 이용함으로써 보다 많은 원자들이 상호작용에 기여할 수 있는 구도이다. AWI증폭 효율에 결정적인 영향을 미치는 것은 바닥 준위 사이의 충돌에 의한 밀도 전이가 주요하다는 사실을 확인할 수 있었으며, 보다 많은 원자들을 상호작용에 참여시킴으로써 광펄스의 속도를 효과적으로 조절할 수 있음이 수치해석 결과를 통해 밝혔고. 이는 실험 결과와 정성적으로 일치함을 알 수 있었다.

지구물리 자료를 이용한 한일공동개발구역 일원의 구조 해석 (Study on the Structure of the Korea-Japan Joint Development Zone by Means of Geophysical Data)

  • 하정원;허식;임형래
    • 지구물리와물리탐사
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    • 제27권1호
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    • pp.23-36
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    • 2024
  • 이 논문에서는 중력, 자력, 및 탄성파 자료를 이용하여 한일공동개발구역(Korea-Japan Joint Development Zone, JDZ)의 구조를 분석했다. 중력과 자력 자료를 분석한 결과 제주 분지 일원에서 낮은 중력 및 자력 이상을 보이는 영역이 확인되었다. 또한, 분지 경계를 확인하기 위하여 부게 이상 자료에 총수평 기울기(total horizontal gradients)를, 그리고 총자기 이상 자료에 어넬리틱 시그널(analytic signal)을 적용한 결과 분지 경계를 확인할 수 있었다. 높은 대자율을 보이는 타이완-신지 벨트는 북동-남서 방향으로 JDZ의 중심을 가로지르고 있으며 관입암체로 추정되는 암상들이 JDZ에 산발적으로 나타난다. 3차원 자력 및 중력 역산 결과는 대자율과 밀도의 높은 상관 관계를 보였다. 제주 분지와 호 분지에서 낮은 밀도 분포를 나타내며 타이완-신지 벨트에서는 높은 대자율 분포를 보여준다. 제주 분지 일원 측선에서 밀도 단면도와 탄성파 단면도를 비교한 결과 높은 밀도는 화성 활동에 의한 암상(sill), 지루(horst), 기반암 상승부와 연관 있으며 낮은 밀도는 기반암이 함몰된 지구(graben)과 연관된 것으로 해석된다. 이 결과는 탄성파 자료와 중자력 자료를 활용한 융합 해석법이 JDZ 일원의 지하구조 특성을 효과적으로 파악할 수 있음을 제시한다.

Characteristics of Si Nano-Crystal Memory

  • Kwangseok Han;Kim, Ilgweon;Hyungcheol Shin
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제1권1호
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    • pp.40-49
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    • 2001
  • We have developed a repeatable process of forming uniform, small-size and high-density self-assembled Si nano-crystals. The Si nano-crystals were fabricated in a conventional LPCVD (low pressure chemical vapor deposition) reactor at $620^{\circ}c$ for 15 sec. The nano-crystals were spherical shaped with about 4.5 nm in diameter and density of $5{\times}l0^{11}/$\textrm{cm}^2$. More uniform dots were fabricated on nitride film than on oxide film. To take advantage of the above-mentioned characteristics of nitride film while keeping the high interface quality between the tunneling dielectrics and the Si substrate, nitride-oxide tunneling dielectrics is proposed in n-channel device. For the first time, the single electron effect at room temperature, which shows a saturation of threshold voltage in a range of gate voltages with a periodicity of ${\Delta}V_{GS}\;{\approx}\;1.7{\;}V$, corresponding to single and multiple electron storage is reported. The feasibility of p-channel nano-crystal memory with thin oxide in direct tunneling regime is demonstrated. The programming mechanisms of p-channel nano-crystal memory were investigated by charge separation technique. For small gate programming voltage, hole tunneling component from inversion layer is dominant. However, valence band electron tunneling component from the valence band in the nano-crystal becomes dominant for large gate voltage. Finally, the comparison of retention between programmed holes and electrons shows that holes have longer retention time.

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NONPOTENTIAL PARAMETERS OF SOLAR ACTIVE REGION AR 5747

  • MOON Y.-J.;YUN H. S.;CHOE GWANGSON;PARK Y. D.;MICKEY D. L.
    • 천문학회지
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    • 제33권1호
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    • pp.47-55
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    • 2000
  • Nonpotential characteristics of magnetic fields in AR 5747 are examined using Mees Solar Observatory magnetograms taken on Oct. 20, 1989 to Oct. 22, 1989. The active region showed such violent flaring activities during the observational span that strong X-ray flares took place including a 2B/X3 flare. The magnetogram data were obtained by the Haleakala Stokes Polarimeter which provides simultaneous Stokes profiles of the Fe I doublet 6301.5 and 6302.5. A nonlinear least square method was adopted to derive the magnetic field vectors from the observed Stokes profiles and a multi-step ambiguity solution method was employed to resolve the $180^{\circ}$ ambiguity. From the ambiguity-resolved vector magnetograms, we have derived a set of physical quantities characterizing the field configuration, which are magnetic flux, vertical current density, magnetic shear angle, angular shear, magnetic free energy density, a measure of magnetic field discontinuity MAD and linear force-free coefficient. Our results show that (1) magnetic nonpotentiality is concentrated near the inversion line in the flaring sites, (2) all the physical parameters decreased with time, which may imply that the active region was in a relaxation stage of its evolution, (3) 2-D MAD has similar patterns with other nonpotential parameters, demonstrating that it can be utilized as an useful parameter of flare producing active region, and (4) the linear force-free coefficient could be a evolutionary indicator with a merit as a global nonpotential parameter.

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INFRARED EMISSION FROM SPHERICAL DUST CLOUDS

  • Lee, Hyung-Mok;Hong, Seung-Soo;Yun, Hong-Sik;Lee, Sang-Gak
    • 천문학회지
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    • 제25권2호
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    • pp.111-128
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    • 1992
  • Infrared emissions from spherical dust, clouds are calculated using quasi-diffusion method. We have employed graphite-silicate mixture with power-law size distribution for the dust model. The grains are assumed to be heated and cooled by radiative processes only. The primary heating source is diffuse interstellar radiation field. hut the cases with an embedded source are also considered. Since graphite grains have higher temperature than silicate grains, the observed IR emission is mainly due to graphite grains, unless the fraction of graphite grains is negligibly small. The color temperature of Bok globules obtained from IRAS 60 and $100{\mu}m$ data are found to be consistent with the dust cloud with graphite-silicate mixture exposed to average interstellar radiation field. The color temperature is sensitive to the external radiation field, but rather insensitive to the size distribution of the grains. We found that the density distribution can be recovered outside the beam size using the inversion technique that assumes negligible optical depth. However, the information within the beam size is lost for if beam convolved intensity distributions are used in deriving density profile.

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Transient analysis of two dissimilar FGM layers with multiple interface cracks

  • Fallahnejad, Mehrdad;Bagheri, Rasul;Noroozi, Masoud
    • Structural Engineering and Mechanics
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    • 제67권3호
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    • pp.277-281
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    • 2018
  • The analytical solution of two functionally graded layers with Volterra type screw dislocation is investigated under anti-plane shear impact loading. The energy dissipation of FGM layers is modeled by viscous damping and the properties of the materials are assumed to change exponentially along the thickness of the layers. In this study, the rate of gradual change ofshear moduli, mass density and damping constant are assumed to be same. At first, the stress fields in the interface of the FGM layers are derived by using a single dislocation. Then, by determining a distributed dislocation density on the crack surface and by using the Fourier and Laplace integral transforms, the problem are reduce to a system ofsingular integral equations with simple Cauchy kernel. The dynamic stress intensity factors are determined by numerical Laplace inversion and the distributed dislocation technique. Finally, various examples are provided to investigate the effects of the geometrical parameters, material properties, viscous damping and cracks configuration on the dynamic fracture behavior of the interacting cracks.

경사냉각면에 따른 함수정방형내의 동결현상에 관한 실험적 연구 (An experimental study on freezing phenomena of water saturated square cavity with inclined cold surface)

  • 이춘희;김종준;김병철
    • 설비공학논문집
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    • 제9권4호
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    • pp.435-445
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    • 1997
  • It was studied the phenomena of transient freezing of an inclined water-saturated enclosure. One side of the test section was cooled and the other sides were insulated. The effects of the initial temperature, the inclination angle on the temperature field and the shape of the ice-water interface were observed. In the beginning of freezing, with increasing the inclination angle the freezing rate was increased and in the stable density layer centered $4^{\circ}C$, the freezing was fast as the convective fluid flow became small. When the initial temperature was above the $4^{\circ}C$, the frozen thickness in the upper part of inclined surface was thinner than that in the lower part, but with time the frozen thickness of upper part was thicker than that of lower part, below the $4^{\circ}C$, the frozen thickness in the upper part was thicker than that of lower part from the begining, and above the $8^{\circ}C$ in the beginning upper part was thinner with concave, but with time thicker the upper part, vanishing concave.

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아이스볼내의 융해과정에 대한 해석 (The Melting Process in an Ice-Ball Capsule)

  • 서정세
    • 설비공학논문집
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    • 제7권4호
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    • pp.577-588
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    • 1995
  • A numerical study is made on the melting process of an unconstrained ice inside an isothermal ice-ball capsule. The unmelted ice core is continuously ascending on account of buoyancy forces. Such a buoyancy-assisted melting is commonly characterized by the existence of a thin liquid film above the ice core. The present study is motivated to present a full-equation-based analysis of the influences of the initial subcooling and the natural convection on the fluid flow associated with the buoyancy-assisted melting. In the light of the solution strategy, the present study is substantially distinguished from the existing works in that the complete set of governing equations in both the melted and unmelted regions are resolved in one domain. Numerical results are obtained by varying the wall temperature and initial temperature. The present results reported the transition of the flow pattern in a spherical capsule, as the wall temperature was increased over the density inversion point. In addition, time wise variation of the shapes for the liquid film and the lower ice surface, the time rate of change in the melt volume fraction and the melting distance at symmetric line is analyzed and is presented.

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DEVELOPMENT OF A NEW ION TRANSPORT CODE FOR PLANETARY IONOSPHERES WITH EXPLICIT TREATMENT OF ION-ION COLLISION

  • KIM YONG HA
    • 천문학회지
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    • 제38권2호
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    • pp.59-66
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    • 2005
  • A new ion transport code for planetary ionospheric studies has been developed with consideration of velocity differences among ion species involving ion-ion collision. Most of previous planetary ionosphere models assumed that ions diffuse through non-moving ion and neutral background in order to consolidate continuity and momentum equations for ions into a simple set of diffusion equations. The simplification may result in unreliable density profiles of ions at high altitudes where ion velocities are fast and their velocity differences are significant enough to cause inaccuracy when computing ion-ion collision. A new code solves explicitly one-dimensional continuity and momentum equations for ion densities and velocities by utilizing divided Jacobian matrices in matrix inversion necessary to the Newton iteration procedure. The code has been applied to Martian nightside ionosphere models, as an example computation. The computed density profiles of $O^+,\;OH^+$, and $HCO^+$ differ by more than a factor of 2 at altitudes higher than 200 km from a simple diffusion model, whereas the density profile of the dominant ion, $O_2^+$, changes little. Especially, the density profile of $HCO^+$ is reduced by a factor of about 10 and its peak altitude is lowered by about 40 km relative to a simple diffusion model in which $HCO^+$ ions are assumed to diffuse through non-moving ion background, $O_2^+$. The computed effects of the new code on the Martian nightside models are explained readily in terms of ion velocities that were solved together with ion densities, which were not available from diffusion models. The new code should thus be expected as a significantly improved tool for planetary ionosphere modelling.

Selective detection of AC transport current distributions in GdBCO coated conductors using low temperature scanning Hall probe microscopy

  • Kim, Chan;Kim, Mu Young;Park, Hee Yeon;Ri, Hyeong-Ceoul
    • 한국초전도ㆍ저온공학회논문지
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    • 제19권1호
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    • pp.26-29
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    • 2017
  • We studied the distribution of the current density and its magnetic-field dependence in GdBCO coated conductors with AC bias currents using low temperature scanning Hall probe microscopy. We selectively measured magnetic field profiles from AC signal obtained by Lock-in technique and calculated current distributions by inversion calculation. In order to confirm the AC measurement results, we applied DC current corresponding to RMS value of AC current and compared distribution of AC and DC transport current. We carried out the same measurements at various external DC magnetic fields, and investigated field dependence of AC current distribution. We notice that the AC current distribution unaffected by external magnetic fields and preserved their own path on the contrary to DC current.