色散的 的英文怎麼說

中文拼音 [shǎisǎnde]
色散的 英文
dispersive
  • : 色名詞[口語] (顏色) colour
  • : 散動詞1. (由聚集而分離) break up; disperse 2. (散布) distribute; disseminate; give out 3. (排除) dispel; let out
  • : 4次方是 The fourth power of 2 is direction
  1. The ionosphere is a complex medium, which is aeolotropy, asymmetry, dispersive and changes randomly with time. in order to improve the communication quality of the shortwave that depends on the ionosphere, we should have aknowledge of the current condition of the ionosphere in real time. the backscatter sounding of high frequency can diagnose the real - time channel characters for shortwave communication or hf radar, which is great assistant to shortwave communication and hf radar

    電離層是隨機時變,各向異性,非均勻、色散的復雜介質。為了保證依賴于電離層進行短波通信質量,必須了解電離層實時狀態信息。高頻返回射探測可以實時監測與短波通信或高頻天波雷達相關天波傳播通道狀態,對短波通信和天波雷達工作起了重要輔助作用。
  2. A note on - dimensional dispersive long wave equation

    色散的長波方程求解一個注記
  3. Using the semiclassical theory, we calculate the correction of the detuning to the absorption and dispersion, and we investigate the impact of the one - photon detuning under the exact two - photon resonance to large kerr nonlinearity and photon switching based eit

    我們利用半經典理論計算失諧量對吸收和色散的修正,分析雙光子共振條件下單光子失諧量對基於eit強kerr效應和光子開關行為作用。
  4. By combining do lens elements with normal refraction elements, color aberration is corrected to levels even higher than is possible with fluorite elements

    Do鏡片與普通折射玻璃結合在一起,色散的校正水準甚至高於螢石鏡片。
  5. The general nonlinear propagation equations of four - lightwaves in birefringent fibers are deduced. the characteristics of polarization mode dispersion in 4 + 10gb / sdwdm system in dispersion - flattened fibers is studied. our results show that pmd exerts a detrimental influence on 4 x logb / sdwdm system in limiting transmission rate and the channel numbers

    本論文研究波分復用( wdm )系統中偏振模色散的影響,主要工作包括下面兩個部分:一、導出了四波長光波在雙折射光纖中傳輸所滿足一般非線性耦合方程;在此基礎上,研究平坦光纖中4 10gb sdwdm系統偏振模特性,並且進一步研究了偏振模對不同通道間隔4 10gb sdwdm系統影響。
  6. It is found that flat and wideband sc ca n ' t be obtained in common dispersion - shifted fiber, and dispersion - flattened fiber with small normal gvd is most suitable for flat and wideband sc generation ( 2 ) sc generated in dispersion - flattened / decreasing fiber is studied profoundly

    結果表明,利用自相位調制效應在常規位移光纖一般不能產生平坦、寬帶sc譜。具有較小正常色散的平坦光纖有利於平坦、寬帶sc譜形成。 ( 2 )研究了平坦漸減光纖中sc譜產生。
  7. We study the time evolution law of the atomic response in an open - type inversionless lasing system when the probe or driving field is off - resonance, and compare the law with that obtained when the probe and driving fields are resonant. we find that the detuning has considerable effects on the time evolution law : when the probe or driving fields is off - resonance, the dispersive responses for the probe and driving fields are no longer 0 and the two - photon coherence is no longer a pure real ; the variation of the probe detuning can make the time evolution law of the population distributions and the gain ( absorbtion ) of the driving field changing obviously ; with detuning increasing, the time evolution behavior of the gain ( absorbtion ), dispersion of the probe field and the two - photon coherence will gradually diviate from the evolution law of the standard damped oscillator ; with the driving detuning increasing, the oscillating time of the dispersion of the driving field becomes longer, the amplitude and the stationary value increase

    研究了探測場或驅動場失諧情況下開放型無粒子數反轉激光系統中原子響應時間演化規律,並與探測場和驅動場都共振時演化規律進行了比較.我們發現失諧對時間演化規律有顯著影響;當驅動場或探測場失諧時,原子對探測場和驅動場色散的響應不再為零,雙光子相干不再是純實量;探測場失諧變化將使粒子布居和驅動場增益(吸收)時間演化規律明顯改變;隨著失諧增大,探測場增益(吸收) 、和雙光子相干隨時間演化行為逐漸偏離標準阻尼振子演化規律;驅動場驅動場失諧量增加而振蕩時間變長,振幅和穩定值變大
  8. Thirdly, the process of this algorithm is described in detail, and a comparison of the dc - dispersion results among different size of window functions is made

    然後詳細講述了這種消演算法具體實現步驟,並且比較了在選取不同長度時間窗函數情況下,消色散的處理過程和殘余量。
  9. Test methods for polarization mode dispersion of single - mode optical fibres

    單模光纖偏振模色散的試驗方法
  10. Jones matrix for second - order polarization mode dispersion of a single - mode fiber

    單模光纖二階偏振模色散的jones矩陣
  11. The magnetic distribution of a - magnet is presented by analytic way and numeric simulation way. the single particle movement is studied in a - magnet and the movement rule of charged particle in ideal four poles magnetic field also is obtained. quantificational results of the incidence angle, trajectory length and the maximal distance in x direction are presented for ideal trajectory, and the equation indicates some important characters of a - magnet

    論文對-磁鐵有關物理問題進行了較為詳細論述,從解析形式和數值模擬兩個方面給出了-磁鐵磁場分佈,對單個粒子在-磁鐵中運動進行了分析,利用數值求解方法研究了帶電粒子在理想四極磁場中運動規律,提出了歸一化運動方程和理想軌道等物理概念,定量給出了消色散的入射角、軌道長度和x方向最大距離解析表達式。
  12. It is found that the peak power of pump pulse is important and the fourth and fifth dispersions are crucial to flatly wideband sc generation from the fiber. the results show that the higher - order nonlinear effects on sc generation can be ignored

    研究結果表明,泵浦脈沖峰值功率對sc譜產生有著重要影響,光纖四階、五階等高階色散的綜合作用對sc譜形成起決定因素,高階非線性效應( raman自射和自變陡效應)影響可以忽略。
  13. The origin of supercontinuum ( sc ) generation in optical fibers has been conjectured to be the interplay between fiber nonlinearities ( self phase modulation, cross phase modulation and raman self scattering ) and group - velocity dispersion ( gvd )

    光纖中超連續supercontinuum ( sc )譜產生源於光纖中各種非線性效應(自相位調制效應、交叉相位調制效應,四波混頻效應及受激raman射等)和群速度色散的共同作用。
  14. The scaling properties of the waveguide dispersion in fibers

    光纖波導色散的比例性質研究
  15. Optical fiber waveguide for dispersion control

    控制色散的波導結構分析
  16. Simulation research on numerical dispersion for modeling of wave guide devices by fdtd

    法建模波導器件時數值色散的模擬研究
  17. Study of the propagation properties of solitons in birefri ngent fibers with the higher - order dispersion

    含高階色散的雙折射光纖孤子傳輸特性研究
  18. Fibre optic communication system design guides - part 7 : statistical calculation of chromatic dispersion

    纖維光學通信系統設計指南.第7部分:顏色散的統計計算
  19. Iec 61282 - 7 optic communication system design guides - part 7 : statistical calculation of chromatic dispersion

    Iec 61282 - 7光學通信系統設計指南.第7部分:色散的統計計算
  20. Iec 61282 - 5 fibre optic communication system design guides - part 5 : accommodation and compensation of dispersion

    Iec 61282 - 5纖維光學通信系統設計指南.第5部分:色散的調節和補償
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