ultraviolet laser 中文意思是什麼

ultraviolet laser 解釋
紫外激光器
  • ultraviolet : adj. 【物理學】紫外的;紫外線的;產生[應用]紫外線的。n. 紫外線輻射。
  • laser : n 鐳射激光,受激發射光,激光;萊塞;激光器,光激射器 ( = light amplification by stimulated emis...
  1. The laser - liga technology provided by this research is the first technology to use ultraviolet laser as the exposal source for su - 8 photoresist lithography. it is a technology with lower cost and big potential to increase the aspect ratio as well as wider application

    本文首次提出採用紫外激光作為曝光光源的laser - liga技術,對su - 8膠進行曝光光刻不僅成本低、易推廣,而且具有大幅度提高光刻深寬比的潛力。
  2. It has high exciton binding energy of 60 mev, which ensures efficient uv emission from the exciton and make it suitable for uv laser - emitting devices. since the first observation of the stimulated ultraviolet emission at room temperature, zno has become another hotspot in the region of uv light emitting researching

    Zno不僅是繼gan之後紫外發射材料研究的又一研究熱點,而且近年來zno薄膜作為ito薄膜的很有發展前景的替代材料,正引起人們日益廣泛的關注。
  3. With the development of science and technology, more and more oxide crystals are synthesized by more and more advanced technique, the new oxide crystals are incessantly synthesized and the new characters of oxide crystals are incessantly founded. corundum dopped with impurity not only is cherished because of it ' s beautiful appearance, but also is used in the fields such as electrotechnics, mechanism, laser, the optic apparatus and the underlay of semiconductor. sapphire dopped with ti3 + is the best material of the tunable solid laser. zno crystal is material of the direct gap semiconductor ( the width of forbidden band : 3. 37ev ). the excited emission in zno crystal at room temperature has been found, so the ultraviolet luminescence in zno semiconductor can be acquired at room temperature

    含有少量雜質的剛玉晶體( - al _ 2o _ 3 )不僅由於其色澤艷麗成為人們珍愛的名貴寶石,而且由於它具有的優異性能,被廣泛應用於電工、機械、激光器,光學器件和半導體襯底材料。鈦藍寶石是目前最優異的固體寬帶調諧激光材料,用於製作飛秒脈沖可調諧激光器。氧化鋅晶體是直接帶隙寬禁帶半導體材料(禁帶寬度3 . 37ev ) ,現已發現具有室溫下受激發射特性,有可能實現室溫下半導體紫外發光。
  4. Technology to unite ppm with turbo code in ultraviolet laser communication

    紫外激光通信中ppm與turbo聯合編碼調制研究
  5. We all know that the output of ultraviolet ( uv ) laser mostly depends on the conversion of nonlinear frequency, thus a new kind of excellent nonlinear optics ( nlo ) crystal is very important for the output of new wavelength

    紫外波段激光的輸出主要採用頻率變換技術來實現,因此一種好的非線性光學晶體對于產生新的波長是非常重要的。
  6. Diode - pumped solid - state laser has been paid more attention for its advantages. green, red, blue and ultraviolet solid - state lasers have attracted many scientists

    激光二極體泵浦的固體激光器( dpssl )由於具有顯著的優點而逐漸成為人們注目的焦點,全固態紅、綠、藍及紫外激光器的研究吸引了眾多的科研工作者。
  7. Office equipment, such as photocopying machines, laser printers, fax machines, computer terminals, air purifiers operating on electrostatic precipitation and ultraviolet equipment, are the main sources of indoor ozone

    室內臭氧的主要來源是文儀器材,例如影印機、激光電腦印表機、圖文傳真機、電腦終端機、採用靜電沉澱原理技術的空氣清新機,以及有紫外光的儀器等。
  8. So far the researches on ultrashortpulse laser - matter interaction concentrated on infrared regime, yet ultraviolet laser has the advantage in intense field physics and icf researches for its short wavelength and less nonlinear effects

    迄今為止,超短脈沖激光及其與物質相互作用的研究大都集中於紅外光譜范圍,而紫外準分子短脈沖激光系統由於其波長短、非線性效應小而具有良好的聚焦性能。
  9. The wavelength of laser for researching is concentrated on the ultraviolet, near infrared and visible light, whereas the wavelength in the range of middle infrared and far infrared is little researched

    研究的激光波段主要集中在紫外、可見光和近紅外波段。而對中遠紅外波段的研究較少。
  10. Extreme ultraviolet laser

    極紫外激光器
  11. For the realization of ultraviolet and violet upconversion solid - state lasers, the maximal obstacle is the search of ultraviolet and violet upconversion laser materials

    研製紫色和紫外上轉換激光器最大的障礙是紫色和紫外上轉換激光材料的制備。
  12. First, a hinged cornea flap is created and flipped aside. then, an ultraviolet laser called an excimer laser, is applied onto the underlying cornea

    首先,進行手術時,需在角膜表面切開一塊很薄的瓣,並將其翻至另一邊。
  13. Quartz ultraviolet laser

    石英紫外激器
  14. The differences of the monochromaticity and the direction of ultraviolet laser and non - laser ultraviolet source are analyzed firstly. the advantage of ultraviolet laser in exposing su - 8 photoresist is discussed

    首先分析了激光紫外光源與普通紫外光源在單色性與方向性上的差異,論證了採用激光紫外光源曝光su - 8光刻膠的優勢。
  15. A ld pumped lbo / bbo / nd : yag 266nm all - solid - state ultraviolet laser and purple and a ld pumped ktp / bbo / nd : yag 266 nm all - solid - state ultraviolet laser were designed respectively ; 1. 5mw and 2. 0mw average output power were obtained respectively when maximum input power of ld was 1. 3 w. reasons of being elliptical beam and 45 ? rotation for the beam were also explained

    設計出一臺lbo bbo nd : yag266nm全固態紫外激光器和一臺ktp bbo nd : yag266nm全固態紫外激光器;用1w的ld作為泵浦源,在最大抽運功率為1 . 3w時,分別獲得了平均功率為1 . 5mw和2 . 0mw的266nm紫外輸出。
  16. Ultraviolet laser uv laser

    紫外激光器
  17. It is widely accepted that zno is one of the most promising materials for producing an ultraviolet laser at room temperature due to its wide direct band gap ( eg = 3. 3ev ) and large excitonic binding energy of 60 mev, which was testified by the results of optically pumped stimulated emission and lasing from zno thin films

    氧化鋅作為一種寬帶隙半導體( 3 . 3ev ) ,激子束縛能大( 60mev ) ,在室溫下容易獲得強的激子發射,而且可能成為紫外激光的重要材料。因此,對氧化鋅的研究已成為繼gan之後寬帶隙半導體研究的又一熱點。
  18. The ultraviolet laser emission is the expected goal of zno nanowires, but we need deep ultraviolet excite source to pump in previous experiments, which put a disadvantageous limit in future application

    Zno納米線紫外受激發射是人們希望達到的目標,但以往的激發過程一般是採用深紫外光泵浦,這對應用本身就是一條不利的限制。
  19. In the conditions, a deep, extensive and detail research, which majored in ld pumped 266 nm all - solid - state ultraviolet laser techniques, was made. and some important achievements are listed as following : 1

    在這種情況下,作者圍繞ld泵浦266nm全固態紫外激光器的技術展開了廣泛、深入、細致的研究,取得了如下具有重要價值的研究成果: 1
  20. The bright prospect of applications for ultraviolet laser in medical laser surgery, material processing etc. is presently limited by the lack of efficient delivery tools. therefore, there is an urgent need of manufacturing fiber with excellent performances

    紫外激光在激光醫療、激光加工等領域有著廣泛的應用前景,但目前由於缺乏較好的傳輸材料而使其應用受到很大的限制,因此,研究與開發高性能傳輸紫外激光的特種光纖已勢在必行。
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