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11.
In this paper, we propose a DFB laser with a horn ridge waveguide (HRW) to suppress the longitudinal spatial hole burning (LSHB) effect in the lasers cavity, thus to reduce the rolloff at low frequency. The simulation result shows that HRW DFB lasers could significantly suppress the LSHB effect and its modulation bandwidth is increased by 14% comparing with the conventional straight ridge waveguide (RW) DFB lasers when the normalized coupling coefficient (κL) is 3.0. The calculated eye diagrams of HRW DFB lasers under direct 25 Gbps modulation have clearer opening than that of the conventional RW DFB lasers. These superior properties are due to the suppression of the LSHB effect by the HRW structure. 相似文献
12.
Simin Sun Sheng Cui Jun Li Xiaozhi Fang Changjian Ke Deming Liu 《Optics Communications》2012,285(16):3519-3523
This paper presents a multi-functional all-optical device performs simultaneous chromatic dispersion (CD) monitoring, extinction ratio (ER) improvement and tunable wavelength conversion using four-wave mixing (FWM) in a single piece of highly nonlinear optical fiber (HNLF). The multi-functional ability arises from the nonlinear power transfer function (PTF) between the input signal and the output idler wave, which not only maps the CD information of the signal onto the average power of idler wave, but also transfers the data information to the idler wave with ER enhancement, making the device compact and cost effective. Furthermore within the wavelength tuning range the monitoring sensitivity and output ER can be much higher compared to all optical monitors and regenerators proposed before. Numerical simulations are then used to demonstrate the efficiency of this method. 相似文献
13.
This paper reports a comparative study of shear banding in BMGs resulting from thermal softening and free volume creation.
Firstly, the effects of thermal softening and free volume creation on shear instability are discussed. It is known that thermal
softening governs thermal shear banding, hence it is essentially energy related. However, compound free volume creation is
the key factor to the other instability, though void-induced softening seems to be the counterpart of thermal softening. So,
the driving force for shear instability owing to free volume creation is very different from the thermally assisted one. In
particular, long wave perturbations are always unstable owing to compound free volume creation. Therefore, the shear instability
resulting from coupled compound free volume creation and thermal softening may start more like that due to free volume creation.
Also, the compound free volume creation implies a specific and intrinsic characteristic growth time of shear instability.
Finally, the mature shear band width is governed by the corresponding diffusions (thermal or void diffusion) within the band.
As a rough guide, the dimensionless numbers: Thermal softening related number B, Deborah number (denoting the relation of instability growth rate owing to compound free volume and loading time) and Lewis
number (denoting the competition of different diffusions) show us their relative importance of thermal softening and free
volume creation in shear banding. All these results are of particular significance in understanding the mechanism of shear
banding in bulk metallic glasses (BMGs).
Supported by the Chinese Academy of Sciences under the project “Multi-Scale Complex System” (Grant No. KJCX-SW-L08), the National
Natural Science Foundation of China (Grant Nos. 10725211 and 10721202), and the Doctorial Start-up Fund of Hunan University
of Science and Technology (Grant No. E50840) 相似文献
14.
We designed, fabricated, and characterized a thermo-optically tunable compact (10 μm × 10 μm) silicon photonic crystal (PhC) light modulator that operates at around 1.55 μm for TE polarization. The operational principle of the device is the modulation of the cutoff frequency in a silicon-based line defect PhC. The cutoff frequency is shifted because of the thermo-optic tuning of the silicon refractive index, which is realized by localized heating on the PhC. The modulator is formed by a triangular lattice array of cylindrical air holes on a silicon-on-insulator wafer. Optical characterization was carried out, and the result clearly showed thermo-optic tuning of the cutoff frequency at around 1.55 μm. 相似文献
15.
16.
直接荧光法和流动注射荧光法测定微量氨的研究 总被引:3,自引:0,他引:3
在碱性介质中 ,基于氨与邻苯二甲醛及 2 巯基乙醇反应生成强荧光性吲哚取代衍生物的体系建立测定水溶液中微量氨的直接荧光法和流动注射荧光法。曲通X 10 0 (TritonX 10 0 )对该体系具有良好的增稳作用。在λex=4 15nm ,λem=4 86nm下 ,用直接荧光法测定NH3含量在 0 2~ 1 0 μg·mL- 1 范围内 ,工作曲线的回归方程为ΔI =2 2 2 86 785 71cNH3(μg·mL- 1 ) (I即为Intensity) ,r=0 9995 ;NH3含量在 0 0 2~ 0 10 μg·mL- 1 范围内 ,工作曲线的回归方程为ΔI=- 2 7 4 2 9 2 371 4cNH3(μg·mL- 1 ) ,r=0 996 5。用流动注射法测定的工作曲线的回归方程为ΔI=1188cNH3(μg·mL- 1 ) ,r=0 9998,线性范围为 0~ 0 7μg·mL- 1 ,并对反应机理进行初步探讨。 相似文献
17.
Qi Wang Jinghui Yang Weiwei Yao Ke Wang Rongni Du Qin Zhang Feng Chen Qiang Fu 《Applied Surface Science》2010,256(20):5843-4934
Self-assembly of block copolymer is an effective strategy to prepare periodic structures at nanoscale. In this paper an unique and very simple method to prepare inorganic silica nanopattern is demonstrated from self-assembling of poly(styrene-block-dimethylsiloxane) (PS-b-PDMS) on the surface of silicon wafer. To simplify the patterning process, at first we obtain highly ordered PDMS microdomains, which are covered with PS layer by controlling solvent vapor annealing conditions. Following exposure to UV/O3 irradiation, nanopatterned surface consisting of silicon oxide is fabricated directly via selectively etching PS phase and converting PDMS phase into silicon oxide. As tuning the composition of the block copolymer, hexagonally packing dot and straight stripe pattern can be obtained. Finally, the time evolution from spheres morphology to aligned long cylinders is discussed. These results hold promise for nanolithography and the fabrication of nanodevices. 相似文献
18.
Room temperature operation of a c-cut microchip Tm,Ho:Lu2SiO5 laser end-pumping by a fibercoupled laser-diode is reported. A 4.03 W incident pump power is used to generate a maximum laser
output of 98 mW, representing 2.43% optical-to-optical conversion efficiency and a 4.38% slope efficiency corresponding to
incident power. In the experiment, the oscillating wavelengths shifting from 2.084 to 2.089 μm has been observed and approximately
10 mW single 2.087 μm wavelength oscillation has been obtained by changing the pump power to 1.43 W and the position of the
pump focus. 相似文献
19.
ONTHEMIXEDPROBLEMSINANEIASTICPIANEWITHPER1ODICCRACKSZhengKe(郑可)(WuhanUniversity)ONTHEMIXEDPROBLEMSINANEIASTICPIANEWITHPER1ODI... 相似文献
20.
L. Ke R.S. Kumar S.J. Chua A.P. Burden 《Applied Physics A: Materials Science & Processing》2005,81(5):969-974
Indium tin oxide (ITO) coated polycarbonate (PC) multilayer flexible substrates have been subjected to different cycles of bending. Atomic force microscopy (AFM) results on bent ITO surfaces show that bending results in much rougher ITO surfaces. The Ca degradation test shows that the ITO cracks are perpendicular to the flexing direction and that barrier performance deteriorated after bending. When an organic light emitting device is fabricated on the bent substrate, electrical and optical performance decrease. This can be attributed to moisture and oxygen permeated through deteriorated substrate and barrier degraded polymer and oxidized cathode materials. However, optical microscopy observation found that the dark spots have less relationship with the size and position of the cracks on oxide film. Instead to a great extent, they are directly related to the ITO surface spikes. The results further prove that the dark spot is due to electrical stress generated by intense local current at sharp anode and cathode points, which degrade the polymer causing the formation of the dark center. PACS 78.66.Qn; 82.35.Cd; 62.60.Mk 相似文献