microcavity 中文意思是什麼

microcavity 解釋
微腔
  1. By introduction of two lif layers, the adjustment of the position of thin layer alq3 in the microcavity is achieved and the effect of the coupling strength between the emissive dipole and vacuum electric - field on the emission intensity in ( / 2 - length microcavity is studied for the first time

    在帶有dbr結構的高q值微腔中,觀察熒光壽命變短輻射速率提高的現象。通過使用填充層,來實現對薄層alq在腔中位置的調節,研究了輻射偶極子同光電磁場的耦合強度對輻射強度的影響。
  2. Experiment re - sults indicate the microcavity of l - - d pc structure can get a high reflection co - efficient and a good stabi1ity and substantiality of the fiim layers in air

    實驗結果表明,光子晶體結構的微腔可以達到很高的反射率,且膜層的牢固性以及在空氣中的穩定性也較好。
  3. Zhao jiamin ( condensed matter physics ) directed by prof. wang lijun the organic electroluminescence ( el ) device with microcavity ( moled ) can take on some new characteristics, such as narrowed spectrum, intensity enhancement, sharply directed emission in space, due to the microcavity effects compared with the common device without cavity ( oled )

    將微腔引入有機電致發光器件中,由於微腔效應的存在,可以獲得多種不同於普通發光器件的發光特性,象譜線窄化,強度增強,發光方向性增強等。
  4. In the far from cutoff approximation the energies of empty cavity modes versus radii of three - dimension semiconductor microcavity are evaluated

    摘要半導體微腔中腔模和激子模藕合形成腔極化激元,三維微腔中由於橫向限定腔模和激子模形成離散化的本徵模式。
  5. The main contents of the dissertation are in solving key technological problems, developing new laser dyes, and studying their lasing property : effects of microcavity are very sensitive to their size

    本文主要內容在開發新材料,解決關鍵技術問題,和摸索其激光物理行為方面:微腔結構對尺寸非常敏感。
  6. Then some cavity quantum electro - dynamic ( cqed ) effects are studied by experiment. the photoluminescence ( pl ) intensity enhancement at resonance wavelength and suppression at off - resonance wavelength, emission spectrum narrowing as well as emission intensity redistribution in space are observed in the microcavity device fabricated with distributed bragg reflector ( dbr ) and silver mirror as well as that done with two silver mirrors

    分別在帶有dbr結構的平面微腔及全金屬鏡構成的平面微腔中觀察到了諧振模式處的輻射增強及非諧振模式處的輻射抑制,發射譜線窄化以及輻射強度空間分佈重組等腔量子電動力學現象。
  7. Using the typical moled structure glass / dbr / ito / htl / eml ( etl ) / al , the el spectrum narrowing, intensity enhancement in the normal direction as well as emission intensity redistribution in space are observed. by the introduction of single layer silver film instead of the dbr / ito multilayer, a ( / 2 - length cavity is obtained. using this kind of microcavity, three - color single mode pl from a single material alq and three - color single mode el from double layers pvk / alq are achieved for the first time

    通過以金屬銀替代多層結構的dbr / ito ,既作為反射鏡,又作為el器件中的空穴注入電極,設計出腔長只有( / 2的超短微腔,採用同一種寬譜帶材料alq作為光發射層,首次報道了三基色單模光致發光和pvk / alq雙層結構的三基色單模電致發光。
  8. Optical microcavity arouses great interest in condensed state physics. it can change characters of spontaneous emission, such as spectral full width at half - maximum, light intensity at peak and so on

    光學微腔是目前凝聚態物理的研究熱點,它能夠改變自發發射的特性(譜線寬度、發光強度等) 。
  9. With strong fluorescence lppp showed a broad pl and el emission with a maximum at 560nm and was regarded as a white light emitter with a strong blue component, thus allowing tunability over the full visible region. the enhanced light - emitting devices were fabricated. microcavity effects were observed both in el and pl

    熒光效率高,並具有從紫外到近紅外十分寬闊的光致和電致發光光譜,最大峰值在560nm左右,是一種具有較強藍光成分的白光發光材料,允許在整個可見光范圍內進行調諧發光,可作為高穩定的發光材料。
  10. By the introduction of chirped dbr with three reflective bands, a new kind of microcavity is fabricated and multi - mode pl is obtained. it is promising to realize white emission by this special microcavity

    通過引入多個高反射區的chirpeddbr來構造平面微腔,實現了光激發下的多模式發射,為研究微腔白色發射提供了一種新的手段。
  11. Emissions from microcavitys made with organic materials with broad and sharp optical spectra were compared respectively, apparent microcavity effects appeared

    發現了幾種有機小分子藍光激光染料,進行了溶液和薄膜狀態下的受激發射表徵。
  12. A method of getting effective microcavity length by measuring microcavity emitting modes, which can direct the controlling of thickness of organic layers, is put forward

    指出光學極值法可以可靠地避免這種影響。介紹通過微腔發光模式確定有效腔長,可方向性指導有機薄膜的厚度控制。
  13. Abstract : based on the enhanced effect of spontaneous emission in cavity quantum electrodynamics, the microcavity effect of vertical cavity surface emitting lasers ( vcsels ) is analyzed, and the results obtained in ordinary open cavities and in three - dimensional closed cavities are compared

    文摘:依據腔量子電動力學中自發輻射增強效應,分析了垂直腔面發射半導體激光器的微腔效應,比較了普通開腔和三維封閉腔中的結果。
  14. In order to realize full color display and improve luminous efficiency, oled with microcavity is formed

    為了實現有機發光的彩色顯示、提高發光效率,將有機發光器件( oled )形成微腔結構。
  15. This paper states design approach, computing process and result of microcavity organic light - emitting device ( moled )

    論文論述了微腔有機發光器件( moled )的設計方法、計算過程和結果。
  16. The optical characteristics of metal silver film used as the reflective mirror of microcavity are calculated by characteristic matrix method and it is shown that the thickness of metal mirror affects not only the reflectivity but also the penetration depth and thus the cavity mode. this conclusion is confirmed by experiment

    通過特徵矩陣法計算了金屬薄膜在光學微腔中的性質,得到了金屬膜厚度不僅影響腔的品質因子,而且隨金屬膜厚度增加,由反射相移引起的等效穿透深度增加的結果,並在實驗上進行了驗證。
  17. The microcavity effect provides the possibility to control the spectral properties of emission and is of considerable interest in the realization of flat panel display devices, which require the emission of blue, green, and red light. in this paper, ladder - type poly ( p - phyenylene ) ( lppp ) thin films were used as the light emitter and hole transporter, while dye pyomethene doped alq was electron transporter

    本文採用有機半導體梯形對次苯基聚合物( lppp )作有機電致發光器件的發光材料和空穴傳輸材料,以1 . 0 % pm580染料( dyepyomethene )摻雜的8 -羥基喹啉鋁( 8 - hydroxyquinolinealuminum - alq )作器件電子傳輸材料。
  18. Work on the research of microcavity semiconductor laser was summarized

    在最後一章里概述了自己在半導體微腔激光器方面的研究工作。
  19. Temperature dependence of vacuum rabi splitting in a single quantum dot - semiconductor microcavity

    半導體微腔中單量子點的真空拉比分裂的溫度效應
  20. This paper introduces researching status of oled, the basic principle and application of microcavity

    本文介紹了oled的研究現狀、微腔的基本原理及它的應用。
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