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991.
在高数值孔径光学光刻中,成像光入射角分布在较大范围内,传统的单底层抗反膜不足以控制抗蚀剂-衬底界面反射率(衬底反射率)。考虑照明光源形状以及掩模的影响,提出了一种新的双层底层抗反膜优化方法,依据各级衍射光光强求衬底反射率的最小权重平均值来配置膜层。针对传统掩模、衰减相移掩模以及交替相移掩模的情况,用该方法优化双层底层抗反膜。结果表明,如果成像时进入物镜光瞳的高阶光越多,高阶光光强越大,则掩模对底层抗反膜优化的影响越大。在某些成像条件下,如使用交替相移掩模实现成像,有必要在底层抗反膜优化中考虑掩模的影响。 相似文献
992.
采用从头计算(ab initio)的方法对Si和Si1-xGex合金半导体材料中CiCs 缺陷的性质进行探讨,同时也对比调查了CiOi 缺陷在Si和Si1-xGex合金中的性质. 在不同Ge含量的Si1-xGex合金中CiCs和CiOi缺陷的结构都具有较好的稳定性;从能量学角度,Ge原子不能与C或O原子直接成键. CiCs缺陷的A型和B型结构在Si1-xGex合金中表现出的行为基本类似,但是A型结构随着Ge含量的增加形成能逐渐减小,结构越来越稳定,而B型结构的形成能先有所下降后逐渐增加;A型和B型结构的能量差值随着Ge含量的增加先在小范围内变化后迅速下降. CiOi缺陷形成能的变化特征较为复杂. 纯Si体系在1000K及以上温度的等温退火过程中,CiCs缺陷的A型结构会向B型结构转变;Si1-xGex合金在进行等温退火时CiCs缺陷的A型结构的变化特征与退火温度、Ge含量和Ge取代的位置等因素有关. 相似文献
993.
Li-an Bian Peiguo Liu Qihui Zhou Chenxi Liu Hanqing Liu Song Zha 《Optical and Quantum Electronics》2018,50(5):220
Total absorption is realized theoretically in a graphene-outside-cavity resonator. The structure is composed of the FP-Fano hybrid resonance cavity. Changing the thickness of grating exciting Fano resonance, the absorption-mode number can be tuned effectively. For the focused double-mode absorption, the resonances behave insensitively with the variation of chemical potential of graphene. Varying the geometry of grating can control the coupling extent of two modes. Also, by manipulating the period number of two-side multilayers around graphene, the absorption, shift and number of modes are governed. 相似文献
994.
Juan?Feng Ji-bing?Chen Jiang-long?Mu Li-da?Chen Hui?Miao En-zhou?Liu Jun?Fan Xiao-yun?HuEmail author 《Journal of nanoparticle research》2018,20(2):38
To overcome the fast recombination rate of electron-hole pairs of individual SnS2, p-n heterojunction g-C3N4/SnS2 composites were fabricated as high-efficiency visible-light photocatalyst to photodegradate the organic dye MB. The morphologies, structures, compositions, and photocatalytic properties were characterized. The SnS2 shows two-dimensional layer structure with an average thickness of 20 nm and diameter size of about 2 μm, and the g-C3N4 nanoflakes were uniformly deposited on the surface of SnS2 nanosheets. In comparison with the bare g-C3N4 and SnS2, the composites show improved photocatalytic activity under visible light, which is sensitive to the content of g-C3N4. In particular, the 15% g-C3N4/SnS2 composites exhibit the highest photocatalytic activity and outstanding reusability, which can degrade 88.01% MB after only 1 h in the visible light (λ?>?420 nm) range. The g-C3N4/SnS2 heterojunction composites show outstanding reusability after four times cycling experiments. The improved photocatalytic activities of composites are attributed to abundant active species, increased charge separation, and decreased electron-hole pair recombination, which originated from the large specific surface area and efficient interfacial transport of photo-induced charge carriers between SnS2 and g-C3N4. These results suggest that the two-dimensional layered g-C3N4/SnS2 p-n heterojunction composites are promised to be a high-efficiency visible-light photocatalyst. 相似文献
995.
Rigui Zhou Huian Wang Qian Wu Yang Shi 《International Journal of Theoretical Physics》2012,51(3):705-723
Based on analysis on properties of quantum linear superposition, to overcome the complexity of existing quantum associative memory which was proposed by Ventura, a new storage method for multiply patterns is proposed in this paper by constructing the quantum array with the binary decision diagrams. Also, the adoption of the nonlinear search algorithm increases the pattern recalling speed of this model which has multiply patterns to O( log22n -t ) = O( n - t )O( {log_{2}}^{2^{n -t}} ) = O( n - t ) time complexity, where n is the number of quantum bit and t is the quantum information of the t quantum bit. Results of case analysis show that the associative neural network model proposed in this paper based on quantum learning is much better and optimized than other researchers’ counterparts both in terms of avoiding the additional qubits or extraordinary initial operators, storing pattern and improving the recalling speed. 相似文献
996.
997.
Zhou M. Luo Z. Q. Wang J. Z. Ye C. C. Fu H. Y. Zhang C. Cai Z. P. Xu H. Y. 《Laser Physics》2012,22(5):991-995
An all-fiber multiwavelength erbium-doped fiber laser (MEDFL) functionalized with evanescent-field-interacting graphene is
proposed and experimentally demonstrated. Graphene-polymer nanocomposites were deposited around the waist region of a fiber
taper fabricated by flame-stretching method. Using the graphene-deposited fiber taper (GDFT) to induce four-wave mixing (FWM)
as a power-equalizing device for suppressing the unstable mode competition in MEDFL, stable multiwavelength lasing around
1530 nm was obtained with a wavelength spacing of 0.56 nm, an extinction ratio of 33 dB, and a narrow linewidth per channel
of <0.01 nm. The output spectrum of the multiwavelength laser has a good flatness, and the power fluctuation of each wavelength
is less than 1.5 dB. Comparing with the traditional methods, such evanescent-field-interaction based graphene stabilizing
mechanism for multiwavelength generation possesses unique advantages: (1) it can avoid the graphene thermal damage, (2) it’s
a real all-fiber integrated structure, and (3) it provides a longer interaction length for exciting FWM more efficiently. 相似文献
998.
An application of the coupled-channels optical method is given for the energy-dependent phenomena of positron-hydrogen resonances below the n=2 excitation threshold. The equivalent local optical potential is used to account for the target polarization and positronium formation. The calculation includes 9 explicitly physical coupled channels. The lowest S-wave resonance energy position and new resonances are found. Angular dependence of the cross section in the resonance region are investigated. 相似文献
999.
L.-Q. Han S.-Y. Zhao Y.-D. Zhou P.-L. Zhang 《Applied physics. B, Lasers and optics》1997,65(3):399-402
Received: 18 June 1996/Revised version: 3 January 1997 相似文献
1000.
采用GaAlAs单量子阱半导体激光器和LD泵浦的Nd:YVO4-KTP倍频激光器等研制了国内首台可从光导纤维输出5种波长的半导体激光生物组织辐照仪,该仪器已在激光生物医学领域投入应用. 相似文献