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3篇 您的检索式:作者名="Hlaing Swe Win"
    题名 作者 年代 出处 被引量
1Relationship between Population Fluctuation of Oriental Fruit Fly Bactrocera dorsalis Hendel and Abiotic Factors in Yezin, Myanmar显示文摘N. N. Yin Y. Y. Theint K. M. Myaing S. S. Oo O. Khin M. Yin M. T.Aye H. H. Hlaing K. Swe Naing Kyi Win 2018Journal of Life Sciences2018,12,3:0
2Computerized FDTD Method for Longitudinal Optical Phonon Energy on Semiconductor Hybrid Structure for High Power Devices Fabrication显示文摘The research problem in this study is the longitudinal optical phonon energy on metal/semiconductor interface for high performance semiconductor device.The research solution is to make the software model with finite difference time domain(FDTD)solution for transmission and reflection pulse between metal and semiconductor interface for carrier dynamics effects.The objective of this study is to find the quantum mechanics understanding on interface engineering for fabricating the high performance device for future semiconductor technology development.The analysis was carried out with the help of MATLAB.The quantum mechanical spatial field on metal-semiconductor stripe structure has been analyzed by FDTD techniques.This emission reveals a characteristic polar radiation distribution of electric dipoles and a wavelength independent of the structure size or the direction of emission;consequently,it is attributed to thermally generate electric dipoles resonating with the longitudinal optical phonon energy.Phonon energy occurs lattice vibration of material by the polarization of light,if the material has rigid structure reflect back the incident light.So,high reflective metal-semiconductor structure always use as photodectors devices in optical fiber communication.No lattice vibration material structure has no phonon effect,so this structure based devices can get high performance any other structure based devices.The transmission and reflection coefficient of metal-semiconductor GaN/Au layer structure compare with GaN/Ti and GaN/Pt structure.Parallel(P)and transverse(S)polarization of light incident on a metal-semiconductor nanolayer structure with IR wavelength.Efficient use of the layer by layer(LbL)method to fabricate nanofilms requires meeting certain conditions and limitations that were revealed in the course of research on model systems.Phyo Sandar Win Hsu Myat Tin Swe Hla Myo Tun 2021Journal of Computer Science Research2021,3,2:0
3Observed characteristics of flow,water mass,and turbulent mixing in the Preparis Channel显示文摘Preparis Channel is the very important exchange path of energy and materials between the northern Bay of Bengal and Andaman Sea(AS).A set of hydrographic measurements,a microstructure profiler,and a deep mooring were used to determine the characteristics of water masses,turbulent mixing,and flows in the Preparis Channel.The unprecedented short-term mooring data reveal that a deep current in the deep narrow passage(below 400 m)of the Preparis Channel flows toward the Bay of Bengal(BoB)with a mean along-stream velocity of 25.26 cm/s at depth of 540 m;above the deep current,there are a relatively weak current flows toward the AS with a mean along-stream velocity of 15.46 cm/s between 500 m and 520 m,and another weak current flows toward the BoB between 430 m and 500 m.Thus,a sandwiched vertical structure of deep currents(below 400 m)is present in the Preparis Channel.The volume transport below 400 m is 0.06 Sv(1 Sv=106 m^(3)/s)from the AS to the BoB.In the upper layer(shallower than 300 m),the sea water of the AS is relatively warmer and fresher than that in the BoB,indicating a strong exchange through the channel.Microstructure profiler observations reveal that the turbulent diffusivity in the upper layer of the Preparis Channel reaches O(10−4 m^(2)/s),one order larger than that in the interior of the BoB and over the continental slope of the northern AS.We speculate that energetic high-mode internal tides in the Preparis Channel contribute to elevated turbulent mixing.In addition,a local“hotspot”of turbidity is identified at the deep mooring site,at depth of about 100 m,which corresponds to the location of elevated turbulent mixing in the Preparis Channel.Ruijie Ye Feng Zhou Xiao Ma Dingyong Zeng Feilong Lin Hongliang Li Chenggang Liu Soe Moe Lwin Hlaing Swe Win Soe Pyae Aung 2023Acta Oceanologica Sinica2023,42,2:0
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