9,478 research outputs found
Influence of near-field electromagnetic interactions on optical properties of perfect lens consisting of left-handed material
In this paper, we investigate the surface plasma resonance of a slab of left-handed material (LHM).We use the transfer matrix method to calculate the attenuated total reflection spectra of the LHM slab. The intrinsic parameters of the LHM slab are suitable chose so that the slab has both negative permittivity & permeability in a frequency range of visible light. We have calculated the cases with different slab thickness & various dielectrics surrounding the LHM slab
The political role of the people's liberation army 1949-1973
This thesis is to study the political role of the People's Liberation Army from the approach of structure and function. The framework of the thesis consists of three major parts, first, the influence of Chinese traditional political culture on, and the formation of, the political role of the PL A; second, the influence of domestic political struggles and external military conflicts on the development of the political role of the PLA; and the third, the analysis of the transition of the PLA's political role from the structure and personnel arrangements of the CCPCC Within the above-mentioned three scopes, this thesis make a thorough discussion on the following: (1) The relationship between the structure of the PRC and the formation of the PLA's political role; (2) How has ideology influenced the army's political role; (3) What is Mao's viewpoint and his influence on the development of the army's political role; (4) What is the link between the army and the party, and how has this developed; (6) What accounts for the expansion of the PLA's political functions; (7) What is the influence of political factional struggles on the PLA's political role; (8) Is it political institution or military institution that controls the recruitment of the military elite; (9) What are the disparities between the military elite in handling international conflicts and what are their political considerations; (10) What is the Party's position in the army; (11) How have the Party’s important meetings and personnel arrangements influenced the rise and fall of the PLA's political role
Lan En-fong, Fa-kuo min-fa-tien chih hsiu-cheng yen-chiu
Lan En-fong, Fa-kuo min-fa-tien chih hsiu-cheng yen-chiu. In: Revue internationale de droit comparé. Vol. 31 N°1, Janvier-mars 1979. pp. 233-234
Lan En-fong, Fa-kuo min-fa-tien chih hsiu-cheng yen-chiu
Lan En-fong, Fa-kuo min-fa-tien chih hsiu-cheng yen-chiu. In: Revue internationale de droit comparé. Vol. 31 N°1, Janvier-mars 1979. pp. 233-234
Plasmonic effects of metal and negative refraction slab
在這篇論文中,我們將概略介紹光與物質交互作用之基本電磁理論、平板結構的表面電漿共振理論以及負折射物質之基本性質,並以傳輸矩陣的方法,計算鋁金屬與負折射物質平板系統的ATR光譜以及電場強度的空間分佈。從計算的結果中可以看出,不論是鋁金屬或負折射物質平板系統,當入射光之頻率與波向量符合激發平板系統之表面電漿共振條件時,在金屬或負折射物質中以及其與周圍介電物質介面處之電場強度將有明顯增強的現象,此外,我們也可以看出,配合適當的入射光條件與金屬或負折射物質平板之厚度,將可以使平板系統達到一個最大的表面電漿共振強度。In this thesis we investigate the surface plasmon resonance properties of a metal (Al) or negative refraction material slab. We use transfer matrix method to calculate the attenuated total reflection (ATR) spectrum and field distribution of the slab material. Calculated results show the field intensity has been enhanced within and at the boundary of the slab material when the frequency and wave vector of incident light correspond to the surface plasmon resonance condition. In conclusion, we found that with proper thickness of slab and light frequency the strength of surface plasmon resonance can be a maximum.致謝......................................................I
中文摘要.................................................II
英文摘要................................................III
目錄 ....................................................IV
圖目錄 ..................................................VI
表目錄 ..................................................XI
第一章 序論 ………………………………………………………… 1
1-1 前言 …………………………………………………………… 1
1-2 研究動機………………………………………………………… 3
參考資料……………………………………………………………… 6
1-3表面電漿之應用 ………………………………………………… 8
參考資料……………………………………………………………… 10
第二章 基本電磁理論 ……………………………………………… 12
2-1 光與物質交互作用 …………………………………………… 12
(a) 介電物質………………………………………………………… 14
(b) 金屬 …………………………………………………………… 21
(c) 尺寸效應的影響 ……………………………………………… 30
(d) Fresnel 關係式 ……………………………………………… 31
2-2 金屬表面電漿 ………………………………………………… 37
(a) 金屬塊材的電漿模態 ………………………………………… 37
(b) 金屬的表面電漿模態 ………………………………………… 40
(c) 有限厚度平板的表面電漿模態 ……………………………… 47
2-3 負折射物質(左手物質)介紹 ………………………………… 52
參考資料…………………………………………………………… 65
第三章 平板系統的表面電漿探討 ……………………………… 66
3-1 計算與模擬方法 ……………………………………………… 66
3-2 金屬平板系統 ………………………………………………… 71
(a) 對稱結構之金屬平板系統 (玻璃/鋁金屬/玻璃) ……… 71
(b) 非對稱結構之金屬平板系統 (玻璃/鋁金屬/空氣) …… 83
3-3 負折射物質(左手物質)平板系統 …………………………… 87
(a) 對稱結構之負折射物質平板系統 (玻璃/負折射物質/玻璃) …………………………………………………………………… 88
(b) 非對稱結構之負折射物質平板系統 (玻璃/負折射物質/空氣) …………………………………………………………………… 93
參考資料……………………………………………………………… 97
第四章 結論與展望 ………………………………………………… 9
Multiple metallic-shell nanocylinders for surface-enhanced spectroscopes
AbstractThe optical properties of multiple dielectric-core-gold-shell nanocylinder pairs are investigated by two-dimensional finite difference time domain method. The core-shell cylinders are assumed to be of the same dimension and composition. For normal incidence, the diffraction spectra of multiple cylinder pairs contain the lightning-rod plasmon mode, and the electric field intensity is concentrated in the gap between the nanocylinder pairs in the infrared region. The resonance wavelength and local field enhancement of this plasmon mode can be tuned by varying the pair-distance between the pairs, the gap-distance between the pairs, and the optical constants of the dielectric-core and the surrounding medium. The results show that the multiple core-shell nanocylinder pair contains the plasmon mode same as that of the solid metallic cylinder pairs at the long wavelength part of the spectrum. The large electric field intensity in the infrared region at long wavelength makes multiple core-shell cylinders as ideal candidates for surface-enhanced spectroscopes.</jats:p
Surface plasmon polariton coupling between nano recording marks and their effect on optical read-out signal
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