electro optical crystal 中文意思是什麼

electro optical crystal 解釋
電光晶體
  • electro : n. (pl. electros) 〈口語〉=electroplate, electrotype.
  • optical : adj 眼的;視覺的;視力的;幫助視力的;光學(上)的。 optical activity 【物理學】旋光性。 an optic...
  • crystal : n 1 結晶,(結)晶體;晶粒;水晶(=rock crystal);石英。2 【無線電】晶體。3 結晶玻璃;雕玻璃;...
  1. In all kinds of switches, thermo - optical switch, mems switch, liquid - crystal switch and air bladder switch are the trend of large - scale switch array, and lithium niobate electro - optical switches and electro - optical polymer switches are the trend of fast switches

    在各種光開關中,熱光開關列陣、微機械光開關列陣、液晶光開關以及氣泡式光開關列陣由於集成度較大,因而將是大規模陣列光開關的發展方向。
  2. Indium stannum oxide ( ito ) as semiconductor have caused a great deal of interest due to their prominent electro - optical behavior. ito has high prominent transmittance, high infrared reflectance, good electrical conductivity, ito applied as gas sensors, photovoltaic devices, heat reflecting mirrors, solar cells, flat panel displays, liquid crystal displays, electroluminescent, devices and organic light - emitting diodes ( oled ) etc. although preparations and applications of ito films have been studied deeply. nano - ito composites hardly studied

    氧化銦錫( ito )是一種高簡並的n型半導體,由於具有導電性,可見光高透過率,紅外反射性,穩定的化學性,被廣泛應用於熱反射建築玻璃、抗靜電塗層,太陽能電池,熱發射鏡,平板顯示器和液晶顯示屏,傳感器,有機光致二級管( oled )等方面,國內外對高質量的ito薄膜的制備和應用進行了深入的研究,但是很少有ito納米粒子與高分子材料復合的報道。
  3. The optical waveguide characteristics such as waveguide mode field profile, and the mode cut - off conditions, and the waveguide dispersion are analyzed with the solution of a certain wave equation. the mechanism of index ellipsoid of linbo _ 3 crystal distorted with an external applied electric field by means of the electro - optic tensor as investigated. based on the operation principle of m - z waveguide, the operation mechanism of the two - section cascaded m - z waveguide and of the modulation electrode are

    調制器的結構設計從m - z干涉型光波導工作原理出發,分析兩級串聯m - z干涉型光波導的工作原理,調制電極的工作原理,從而設計出了工作於1 . 054 m的、兩級串聯m - z干涉型光波導、行波電極linbo _ 3為強度調制器的結構參數。
  4. Electro - optical curves for lc cells have been analyzed and it has been shown mat a large attenuation range and a shallow attenuation slope can be achieved simultaneously for a variable optical attenuator based on a parallel - aligned lc cell with an appropriate surface anchoring strength. as compared with the existing liquid crystal - based voa structure ( using two cascaded lc cells with a particular material ), the present structure is simple and has no special requirement for the lc materials

    提出了基於弱錨定平行排列液晶盒的可變光衰減器(衰減范圍大、衰減曲線下降平緩以保證調節精度) ,與己有液晶型可變光衰減器結構(選用特定液晶材料、兩個液晶盒級聯結構)相比較,本論文提出的基於弱錨定平行排列液晶盒的可變光衰減器結構簡單,同時對于液晶材料無特殊要求。
  5. After the discussion of the electro - optical property of liquid crystal, several methods of accelerating the responding time are presented. using these methods the respond time can be accelerated effectively

    在對液晶的電光性質進行了深入的討論之後,又給出了提高液晶響應速度的方法,通過這些方法,可以有效的提高液晶的響應速度。
  6. After analyzing the characteristics of the lithium niobate crystal and the principle of electro - optic phase modulation & the coupling of single - mode fiber with optical waveguide, the fabrication of the single - mode lithium niobate bar waveguide and v - groove has been studied, the new project in which the lithium niobate v - groove is used for the coupling of the single - mode fiber with optical waveguide is put forward

    在分析了鈮酸鋰晶體的相關特性、電光相位調制的基本原理以及單模光纖和光波導的對接耦合以後,研究了單模鈮酸鋰條形波導和鈮酸鋰v型槽的製作工藝,提出了使用鈮酸鋰v型槽實現單模光纖與波導耦合的方案。
  7. Potassium titanyl phosphate ( ktiopo4 or ktp ) crystal is a superior nonlinear optical material. but its high conductivity along c direction limits its applications in electro - optical areas

    磷酸鈦氧鉀( ktiopo4或ktp )晶體是一種性能優良的非線性光學晶體材料,但由於其c向電導率較高的緣故,限制了它在電光方面的應用。
  8. Optical grade lithium niobate single crystal is one of the most versatile and well - established active optical materials and is used in electro - optic, acoustic - optic, and nonlinear optic applications such as optical wave guide devices, modulators, optical integrated circuits and holographic memory

    由於其獨特的光電、聲光及非線性光學等性能,已被廣泛地應用在光波導元件、光調變器、積體光學迴路以及高解析度的全息存儲等重要元件。
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