• Title/Summary/Keyword: green mode

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Radiation from a Cavity-Backed Circular Aperture Surrounded by Concentric Corrugations

  • Kim, Ji Hyung;Song, Sung Chan;Park, Yong Bae
    • Journal of Electrical Engineering and Technology
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    • v.12 no.2
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    • pp.880-885
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    • 2017
  • Radiation from a cavity-backed circular aperture surrounded by concentric corrugations is studied. An electromagnetic boundary-value problem of the cavity-backed circular aperture surrounded by concentric corrugations is solved by using the Green's function, Hankel transform, and mode matching method. The radiated fields are computed in terms of corrugation geometry to illustrate radiation behaviors and measured to validate our computation. The effects of the corrugation geometries on the radiation are discussed.

Propagation Characteristics of Shielded Coplanar Waveguides (차폐된 코플래너 도파로의 전송특성)

  • 김영택;이택경
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.32A no.9
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    • pp.1236-1243
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    • 1995
  • The propagation characteristics of the symmetric and the asymmetric shielded coplanar waveguide with finite metallization thickness is analyzed by boundary integral method employing the equivalence principle. Since the Green's function and the basis functions are composed of sinusoidal functions, the integration in Galerkin's method is solved analytically. The propagation constants of the fundamental and the first higher order mode are obtained and the effects of strip thickness, substrate permittivity, and the asymmetry of the structure are calculated.

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Dependence of color reproduction on screen mode of DLP projection TV (DLP 프로젝션 TV의 화면모드별 색특성 분석)

  • 김태희;김동환;송영란;김문철
    • Proceedings of the Optical Society of Korea Conference
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    • 2003.02a
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    • pp.268-269
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    • 2003
  • 삼성전자는 LCD 방식에 이은 3세대 프로젝션 모델로 평가받는 DMD (Digital Micromirror Device) 기술을 채용한 43‘’, 50‘’, 61‘’ DLP (Digital Light Processing) 프로젝션 TV를 개발 시판하고 있다. DMD 기술이란 921,600개의 미세한 거울들이 신호에 따라 반사각도를 조절하며 이미지를 구현하는 기술이다. 삼판식 프로젝션 시스템의 단점을 개선, 경박단소와 저가격화를 위하여 단판식을 이용하는 DLP 프로젝션 TV 의 경우 Red, Green, Blue 로 이뤄진 칼라휠을 회전시킴으로서 DMD 위에 연속적으로 삼색의 영상을 재생하여 색을 분리 합성한다. (중략)

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Developement of Single Mode Diode Pumped Green Laser (단일모드 다이오드 여기 녹색광 레이저 개발)

  • 이용우;이종훈
    • Proceedings of the Optical Society of Korea Conference
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    • 2003.02a
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    • pp.48-49
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    • 2003
  • 저출력 다이오드 여기 레이저에서는 공간모드 특성을 좋게하고 여기 효율을 올리기 위하여 단면 여기 방식을 주로 사용한다. 특히 레이저 다이오드 (LD)로 여기하는 단일모드 녹색광 레이저는 홀로그램, 간섭계, 측정기 등의 응용분야에서 수요가 날로 증가하고 있다. 단일모드 녹색광 레이저의 발진방법으로는 여러 가지가 고안되어 왔다. 먼저 공진기 내부에 얇은 판을 브루스터 (Brewster) 각으로 두어서 편광시키고 이것을 복굴절특성을 가진 Nd:YVO$_4$ 결정과 결합시켜 복굴절 필터 기능을 하게 하는 방법이 있다. (중략)

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Self-starting vector phase conjugate laser oscillator in inverted Nd:YAG

  • Kim, D.H.;Udaiyan, D.;Green, R.P.M.;Crofts, G.J.;Damzen, M.J.
    • Journal of the Optical Society of Korea
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    • v.1 no.1
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    • pp.41-43
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    • 1997
  • We report the operation of a self-adaptive vector phase conjugate laser (VPCL) oscillator which compensates intracavity polarization distortion and wavefront aberration simultaneously. The VPCL in Nd:YAG gain media produce an output with energy of 125mJ in a 20ns single-longitudinal-mode pulse at 10Hz, which is unaffected by intracavity polarization distortion.

Analysis of Waveguide Junction in H-Plane Using Finite Element-Boundary Element Method (혼합 유한요소법을 사용한 H-평면의 도파관 접합 해석)

  • 정진교;천창열;정현교;한송엽
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.43 no.4
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    • pp.666-672
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    • 1994
  • An H-Plane waveguide component with arbitrary shape is analyzed using finite element method(FEM) Cooperated with boundary element method(BEM). For the application of BEM in the waveguide structure, a ray representation of the waveguide Green's function is used. This technique is applied to the analysis of the waveguide inductive junction. The results are compared with the results of the mode matching technique. The comparison shows good agreement.

A novel model of a nonlocal porous thermoelastic solid with temperature-dependent properties using an eigenvalue approach

  • Samia M. Said
    • Geomechanics and Engineering
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    • v.32 no.2
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    • pp.137-144
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    • 2023
  • The current article studied wave propagation in a nonlocal porous thermoelastic half-space with temperature-dependent properties. The problem is solved in the context of the Green-Lindsay theory (G-L) and the Lord- Shulman theory (L-S) based on thermoelasticity with memory-dependent derivatives. The governing equations of the porous thermoelastic solid are solved using normal mode analysis with an eigenvalue approach. In order to illustrate the analytical developments, the numerical solution is carried out, and the effect of local parameter and temperature-dependent properties on the physical fields are presented graphically.

A Study on Exhaust Gas Characteristics of Off-road Mechanical Diesel Engine According to EGR Map Application (Off-Road 기계식 디젤엔진의 EGR Map 적용에 따른 배출가스 특성 연구)

  • Kim, HoonMyung;Kang, JeongHo;Han, DaHye;Ha, HyeongSoo;Jung, HakSup;Pyo, SuKang;Ahn, JuengKyu
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.38 no.8
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    • pp.665-670
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    • 2014
  • Because reducing atmospheric pollution is becoming a serious issue, studies are actively focusing on exhaust gas reduction. This study was conducted to determine the emission characteristics when applying an EGR system, the main approach used for NOx reduction, to an off-road mechanical diesel engine. For the application of the EGR system, the emission characteristics in consideration of the engine conditions were analyzed. The optimum EGR ratio for NOx emission reduction was determined by applying variable EGR conditions for each engine speed condition. Considering the above process, the emission characteristics of the modified EGR condition are compared with those of other conditions (non-EGR and existing EGR condition) in the NRTC mode. Consequently, NOx emission was reduced by around 42 compared with the non-EGR condition when using the modified EGR map.

Scattering characteristics of metal and dielectric optical nano-antennas

  • Ee, Ho-Seok;Lee, Eun-Khwang;Song, Jung-Hwan;Kim, Jinhyung;Seo, Min-Kyo
    • Proceedings of the Korean Vacuum Society Conference
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    • 2015.08a
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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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Study on Equillibrium, Kinetic, Thermodynamic Parameters for Adsorption of Brilliant Green by Zeolite (제올라이트에 의한 Brilliant Green의 흡착에 대한 평형, 동역학 및 열역학 파라미터에 관한 연구)

  • Lee, Jong Jib
    • Korean Chemical Engineering Research
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    • v.56 no.1
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    • pp.112-118
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    • 2018
  • Adsorption equilibrium, kinetic and thermodynamic parameters of a brilliant green from aqueous solutions at various initial dye concentration (10~30 mg/L), contact time (1~24 h) and temperature (298~318 K) on zeolite were studied in a batch mode operation. The equilibrium adsorption values were analyzed by Langmuir, Freundlich and Dubinin-Radushkevich model. The results indicate that Langmuir and Freundlich model provides the best correlation of the experimental data. Base on the estimated values of Langmuir dimensionless separation factor ($R_L=0.041{\sim}0.057$) and Freundlich constant (1/n=0.30~0.47), this process could be employed as effective treatment method. calculated values of adsorption energy by Dubinin-Radushkevich model were 1.564~1.857 kJ/mol corresponding to physical adsorption. The adsorption kinetics of brilliant green were best described by the pseudo second-order rate model and followed by intraparticle diffusion model. Thermodynamic parameters such as activation energy, free energy, enthalpy and entropy were calculated to estimate nature of adsorption. negative Gibbs free energy (-10.3~-11.4 kJ/mol), positive enthalpy change (49.48 kJ/mol) and Arrehenius activation energy (27.05 kJ/mol) indicates that the adsorption is spontaneous, endothermic and physical adsorption process, respectively.