• 제목/요약/키워드: coupling intensity

검색결과 148건 처리시간 0.019초

결합광 세기에 따른 Rb 원자의 사다리형 전자기 유도 투과 (Coupling Intensity Effects in Ladder-type Electromagnetically Induced Transparency of Rb atoms)

  • 문한섭;이림;김중복
    • 한국광학회지
    • /
    • 제16권1호
    • /
    • pp.1-6
    • /
    • 2005
  • 우리는 Rb원자의 5S$_{1}$2-/5P$_{3}$2-/5D$_{5}$2/ 전이선에서 조사광과 곁합광의 편광조합 그리고 결합광 세기에 따른 사다리형 전자기 유도 투과(EIT) 현상을 조사하였다. 우리는 5D$_{5}$2/ 전이선에서 초미세구조를 가진 사다리형 EIT 스펙트럼을 얻었고, EIT 스펙트럼의 최소 선폭은 6.5 MHz로 측정되었다. 우리는 EIT 초미세구조의 상대적인 크기가 레이저의 편광조합 뿐만 아니라 결합광의 세기에 따라서 변하는 것을 실험적으로 관측하였고, 결합광의 세기에 따라 신호의 크기가 달라지는 이유는 광의 세기에 대하여 원자계가 비선형적으로 상호작용하기 때문이라는 사식을 밝혔다.

Research on aerodynamic force and structural response of SLCT under wind-rain two-way coupling environment

  • Ke, Shitang;Yu, Wenlin;Ge, Yaojun
    • Wind and Structures
    • /
    • 제29권4호
    • /
    • pp.247-270
    • /
    • 2019
  • Wind-resistant design of existing cooling tower structures overlooks the impacts of rainfall. However, rainstorm will influence aerodynamic force on the tower surface directly. Under this circumstance, the structural response of the super-large cooling tower (SLCT) will become more complicated, and then the stability and safety of SLCT will receive significant impact. In this paper, surrounding wind fields of the world highest (210 m) cooling tower in Northwest China underthree typical wind velocities were simulated based on the wind-rain two-way coupling algorithm. Next, wind-rain coupling synchronous iteration calculations were conducted under 9 different wind speed-rainfall intensity combinations by adding the discrete phase model (DPM). On this basis, the influencing laws of different wind speed-rainfall intensity combinations on wind-driving rain, adhesive force of rain drops and rain pressure coefficients were discussed. The acting mechanisms of speed line, turbulence energy strength as well as running speed and trajectory of rain drops on structural surface in the wind-rain coupling field were disclosed. Moreover, the fitting formula of wind-rain coupling equivalent pressure coefficient of the cooling tower was proposed. A systematic contrast analysis on its 3D distribution pattern was carried out. Finally, coupling model of SLCT under different working conditions was constructed by combining the finite element method. Structural response, buckling stability and local stability of SLCT under different wind velocities and wind speed-rainfall intensity combinations were compared and analyzed. Major research conclusions can provide references to determine loads of similar SLCT accurately under extremely complicated working conditions.

자체회절 진동에 의한 포토폴리머 홀로그램의 격자 위상측정 (Grating phase measurement of photopolymer hologram by self-diffraction oscillations)

  • 경천수;성기영;곽종훈;최옥식;이윤우;이인원;서호형;이일항
    • 한국광학회지
    • /
    • 제10권4호
    • /
    • pp.328-334
    • /
    • 1999
  • Acrylamide를 홑몸체로 하는 포토폴리머에서 두광파혼합(two-wave energy coupling)실험을 하였다. 외부의 전기장이나 비선형 매질의 이동, 또는 두 입사파 중 광파의 위상이동 없이 자체회절 진동(self-diffraction oscillations)로 측정되었다. 이러한 현상을 설명하기 위하여 위상격자와 흡수격자가 혼합된 격자(mixed grating)와 두 광파의 에너지 결합동안에 형성되는 강도 간섭무늬에 대해 공간 위상 이동(nonlocal response)이 있는 경우를 가정하여, 수정된 Kogelnik의 결합파동 방정식을 유도하였다. 측정된 자체회절 진동을 통하여 포토폴리머의 위상격자(phase grating)는 강도격자(intensity grating)에 대해$\pm$50。의 위상 이동이 있음을 알았다.

  • PDF

Efficient Optical Intensity Modulator Based on the Electrically Tunable LiNbO3 Reflection Grating for Analog Fiber-Optic Links

  • Jung I-Young Michelle;Shin Dong-Soo
    • Journal of the Optical Society of Korea
    • /
    • 제11권1호
    • /
    • pp.1-5
    • /
    • 2007
  • We investigate the efficiency of an optical intensity modulator based on an electrically tunable $LiNbO_3$ reflection grating. Assuming a grating coupling coefficient and the waveguide propagation loss, waveguide length is varied to find its effect on the modulator slope efficiency and the device capacitance. With the low propagation loss of the $LiNbO_3$ waveguide, a very efficient optical intensity modulator can be achieved for a low frequency (${\sim}1GHz$) as long as the requirement for the grating coupling coefficient is satisfied.

성층권 평균장이 중위도 제트에 미치는 영향: 역학코어 모형 실험 (The Sensitivity of the Extratropical Jet to the Stratospheric Mean State in a Dynamic-core General Circulation Model)

  • 이재원;손석우;김서연;송강현
    • 대기
    • /
    • 제31권2호
    • /
    • pp.171-183
    • /
    • 2021
  • The sensitivity of the extratropical jet to the stratospheric mean state is investigated by conducting a series of idealized numerical experiments using a dynamic-core general circulation model. When the polar stratosphere is forced to be cold, the extratropical jet, defined by the 850-hPa zonal wind, tends to shift poleward without much change in its intensity. The opposite is also true when the polar stratosphere becomes warm. This jet response, however, is not exactly linear. A poleward jet shift under a cold vortex is much weaker than an equatorward jet shift under a warm vortex. The jet intensity change is also larger under a warm vortex. This result indicates that the stratosphere-troposphere downward coupling is more efficient for the warm and weak polar vortex. This finding is consistent with a stronger downward coupling during stratospheric sudden warming than vortex intensification events in the Northern Hemisphere winter, possibly providing a clue to better understand the observed stratosphere-troposphere downward coupling.

A study on the working mechanism of internal pressure of super-large cooling towers based on two-way coupling between wind and rain

  • Ke, Shitang;Yu, Wenlin;Ge, Yaojun
    • Structural Engineering and Mechanics
    • /
    • 제70권4호
    • /
    • pp.479-497
    • /
    • 2019
  • In the current code design, the use of a uniform internal pressure coefficient of cooling towers as internal suction cannot reflect the 3D characteristics of flow field inside the tower body with different ventilation rate of shutters. Moreover, extreme weather such as heavy rain also has a direct impact on aerodynamic force on the internal surface and changes the turbulence effect of pulsating wind. In this study, the world's tallest cooling tower under construction, which stands 210m, is taken as the research object. The algorithm for two-way coupling between wind and rain is adopted. Simulation of wind field and raindrops is performed iteratively using continuous phase and discrete phase models, respectively, under the general principles of computational fluid dynamics (CFD). Firstly, the rule of influence of 9 combinations of wind speed and rainfall intensity on the volume of wind-driven rain, additional action force of raindrops and equivalent internal pressure coefficient of the tower body is analyzed. The combination of wind velocity and rainfall intensity that is most unfavorable to the cooling tower in terms of distribution of internal pressure coefficient is identified. On this basis, the wind/rain loads, distribution of aerodynamic force and working mechanism of internal pressures of the cooling tower under the most unfavorable working condition are compared between the four ventilation rates of shutters (0%, 15%, 30% and 100%). The results show that the amount of raindrops captured by the internal surface of the tower decreases as the wind velocity increases, and increases along with the rainfall intensity and ventilation rate of the shutters. The maximum value of rain-induced pressure coefficient is 0.013. The research findings lay the basis for determining the precise values of internal surface loads of cooling tower under extreme weather conditions.

광굴절결정에서 인코히어런트한 두 빔에 의해 발생되는 위상공액파의 광세기 의존성 (Intensity Dependence of Mutually Pumped Phase Conjugator in Photorefractive Crystal)

  • 박서연;곽종훈;김천민
    • 전자공학회논문지A
    • /
    • 제29A권2호
    • /
    • pp.41-46
    • /
    • 1992
  • Mutually pumped phase conjugator(MPPC) is experimentally investigated and analyzed in terms of fanning gratings of a photorefractive BaTiO$_3$ crystal. As considering the intensity-dependent absorption and coupling cofficients in photorefractive two wave mixing, the dependence of phase conjugate reflectivites on the incident angle, beam ratio, and total intensity in MPPC is analyzed.

  • PDF

Transient Response of a Permeable Crack Normal to a Piezoelectric-elastic Interface: Anti-plane Problem

  • Kwon, Soon-Man;Lee, Kang-Yong
    • Journal of Mechanical Science and Technology
    • /
    • 제18권9호
    • /
    • pp.1500-1511
    • /
    • 2004
  • In this paper, the anti-plane transient response of a central crack normal to the interface between a piezoelectric ceramics and two same elastic materials is considered. The assumed crack surfaces are permeable. By virtue of integral transform methods, the electro elastic mixed boundary problems are formulated as two set of dual integral equations, which, in turn, are reduced to a Fredholm integral equation of the second kind in the Laplace transform domain. Time domain solutions are obtained by inverting Laplace domain solutions using a numerical scheme. Numerical values on the quasi-static stress intensity factor and the dynamic energy release rate are presented to show the dependences upon the geometry, material combination, electromechanical coupling coefficient and electric field.

RF Shimming Considering Coupling Effects for High-Field MRI

  • Heo, Hye-Young;Cho, Min-Hyoung;Lee, Soo-Yeol
    • 대한의용생체공학회:의공학회지
    • /
    • 제29권4호
    • /
    • pp.267-271
    • /
    • 2008
  • The RF shimming technique has been used to improve the transmit RF field homogeneity in highfield MRI. In the RF shimming technique, the amplitude and phase of the driving currents in each coil element are optimized to get homogenous flip angle or uniform image intensity. The inductive and capacitive coupling between the coil elements may degrade the RF field homogeneity if not taken into account in the optimization procedure. In this paper, we have analyzed the coupling effects on the RF shimming using a sixteen-element TEM RF coil model operating at 300 MHz. We have found that the coupling effects on the RF shimming can be reduced by putting high dielectric material between the active rung and the shield.

무한 탄성 평판상의 기준점에 전달되는 진동인텐시티의 능동제어 (Active Control of Vibrational Intensity at a Reference Point in an Infinite, Elastic Plate)

  • 김기만
    • 한국소음진동공학회논문집
    • /
    • 제11권4호
    • /
    • pp.22-30
    • /
    • 2001
  • In this paper, active control of vibrational intensity at a reference point in an infinite, elastic plate was discussed. The plate is excised harmonically by a vibrating source, which has a vertical point force. The optimal condition of controller was investigated to minimize the vibrational intensity being transmitted from the vibrating source to a reference point. Hence the method of feedforward control was employed for the control strategy and then the cost function was evaluated to find the optimal control force. Three types of control force (Vertical force, Moment, and Coupling force (a set of vertical force and moment) ) and controller's positions were examined to define the optimal condition of the controller. The vibrational intensity at a reference point was found to be reduced down to a zero level, compared with the uncontrolled case. Especially maximum reduction of vibrational intensity was achieved when the controller was collinearly positioned between a vibrating source and a reference point.

  • PDF