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从理论上研究了高气压CO2激光器的宽带输出频谱特性.结果表明,在20个大气压下,CO2激光器有宽带输出,带宽高达5.0 cm-1(相当于150 GHz),从971 cm-1~976 cm-1,峰值在10R(16)线处,10R(14)线和10R(18)线差不多对称地分布其两侧.很小的增益差异(4.6%)造成了很大的能量输出差异(100多倍).比较了谐振腔内有无色散元件时的输出频谱,理论证明了谐振腔内无任何色散元件时的宽带输出频谱是光滑连续的,而频率依赖的反馈引起了输出频谱很强的精细结构.理论计算结果与实验测量结果符合较好.  相似文献   

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丁长林  万重怡 《光学学报》2006,26(11):705-1709
扩展了脉冲CO2激光器的多频动力学理论。将多频动力学模型中的光强方程用光场方程代替,建立了脉冲CO2激光器注入锁定的理论计算模型。采用四阶经典龙格库塔(Runge-Kutta)算法,计算了不同注入信号强度和失谐频率下的激光输出功率、瞬时频率和增益系数。研究了注入锁定宽调谐横向激励大气压(TEA)CO2激光器模式锁定的稳定性问题。研究结果表明,当频率偏离谱线中心600 MHz时,为了实现稳定的模式锁定所需要的注入信号强度应比在谱线中心处高出两个数量级。理论结果和已发表的实验数据符合得很好。研究进一步预示:当激光器气压增大至10倍大气压时,对于同样调谐范围所需的注入信号强度仅比在谱线中心处高出10%左右。  相似文献   

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It is shown that the optimum ratio between the main components CO2:N2:He of the active medium of continuous-wave electric-discharge CO2 lasers depends on the temperature of the active medium. Continuous-wave CO2 lasers can operate effectively at high temperatures of their active medium (T 1000 K) if in their composition the fraction of N2 molecules is increased as compared to the fraction of CO2 molecules (CO2:N2 < 1:15) and the fraction of He atoms is decreased (He n< CO2 + N2).  相似文献   

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The spectral output of a TEA CO2 laser utilizing nonconventional CO2/H2 and CO2/N2/H2 gas mixtures was analysed. A simultaneous multiline output in P-branch of the 00°110°0 transition was recorded. A domination of the P(18) line is typical for the first, and that of the P(20) line for the second gas mixture. The enhancement of the P(18) line intensity in spectra (different from P(20) line domination-CO2/N2/H2 mixture) is explained primarily by a smaller contribution of the R(23) line gain (01111110 CO2 band), to P(20) line (00°110°0 band). All measurements were conducted with a nondispersive optical cavity.  相似文献   

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采用浸渍法制备了Ni-Ti-O/SiO2催化剂,在紫外光照射下,考察了甲醇和CO2光催化羰基化反应性能,并通过原位红外光谱,XPS和MS等表征分析了可能的反应机理。实验结果表明,Ni-Ti-O/SiO2催化剂对甲醇和CO2光催化作用较显著,在180min反应时间内,甲醇的转化率达到了24.9%,羰基化产物的选择性超过了60%;结合催化剂表征结果推断,O-C.-O-和CH3OC(O).或许是甲醇和CO2羰基化反应的重要中间体。  相似文献   

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提出了一种新的小型TEA CO2激光锁定技术-复合腔注入锁定技术,并介绍了它的原理。从理论上分析了复合腔注入锁定激光器的频率特性。给出了复合腔注入锁定试验研究的初步结果。  相似文献   

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This paper presents the adsorption and thermal decomposition mechanism of formic acid on an H-birnessite sample. Changes in the surface and structure were characterized using infrared spectroscopy, N2 gas adsorption–desorption, and thermal analysis techniques. The acid sites of H-birnessite were investigated by infrared and thermal analysis using pyridine as a molecular probe. Decomposition of formic acid started on H-birnessite at 120°C and was complete at 400°C. Infrared spectra revealed that the molecularly adsorbed formic acid species were transformed to a formate species, and the formate species were transformed to CO. The most stable adsorption structure for formic acid was found as a molecular monodentate configuration.  相似文献   

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Ultra‐short laser pulses with only a few optical cycles duration have gained increasing importance during the recent decade and are currently employed in many laboratories worldwide. In addition, modern laser technology nowadays can provide few‐cycle pulses at very high average power which advances established studies and opens exciting novel research opportunities. In this paper, the two complementary approaches for providing few‐cycle pulses at high average power, namely optical parametric amplification and nonlinear pulse compression, are reviewed and compared. In addition, their limitations and future scaling potential are discussed. Furthermore, selected applications particularly taking advantage of the high average power and high repetition rate are presented.  相似文献   

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Simultaneous two‐state lasing is a unique property of semiconductor quantum‐dot (QD) lasers. This not only changes steady‐state characteristics of the laser device but also its dynamic response to perturbations. In this paper we investigate the dynamic stability of QD lasers in an external optical injection setup. Compared to conventional single‐state laser devices, we find a strong suppression of dynamical instabilities in two‐state lasers. Furthermore, depending on the frequency and intensity of the injected light, pronounced areas of bistability between both lasing frequencies appear, which can be employed for fast optical switching in all‐optical photonic computing applications. These results emphasize the suitability of QD semiconductor lasers in future integrated optoelectronic systems where a high level of stability is required.  相似文献   

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NMR and GC/MS spectroscopy of the organic extracts of the oscillatory bromate‐1,4‐cyclohexanedione reaction illustrate the presence of ring‐opening products 5‐(dibromomethylene)‐2(5H)‐furanone, (E)‐5,5,5‐tribromo‐4‐oxo‐2‐pentenoic acid, and dibromoacetic acid, particularly at elevated temperatures. The loss of a carbon atom from the six‐membered ring after ring opening led to gas formation and such a process became more vigorous at >60 °C, with the direct observation of bubbles in a stirred batch reactor. Gravimetric experiments confirm that the amount of carbon dioxide gas produced increases rapidly with reaction temperature. Parallel experiments suggest that the ring‐opening process involves the oxidation of brominated benzoquinones by bromate. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

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Laser cutting of glass using the controlled fracture technique leads to cut path deviation at the leading and trailing edges of the float glass sheet. In this technique, thermal stresses are used to induce the crack, and the material is separated along the cutting path by extending the crack. We show that the cut path deviation is partly due to high magnitudes of thermal stresses generated near the sheet edges. The absorption of intense radiation from the CO2 and diode laser beams in the glass causes local temperature increases and consequently generates different thermal fields and stress distributions due to surface and volumetric heat absorption. In this paper, we report the effect of the CO2 and diode laser wavelength interaction with the float glass and its effect on the magnitudes of thermal stresses generated near the edges of the glass sheet. We simulate the distribution of the thermal stress and temperature using finite-element analysis software Abaqus and validate it against the experimental data. We show that the CO2 laser produces a lower surface quality and a larger cut path deviation at the leading and trailing edges of the glass sheet as compared to the diode laser.  相似文献   

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CO2 capture and storage technology is of key importance to reduce the greenhouse effect. By its large surface area and sp3 hybridization, Li‐functionalized silicene is demonstrated to be a promising CO2 absorbent that is stable up to at least 500 K and has a very high storage capacity of 28.6 mol/kg (55.7 wt%). The adsorption energy of CO2 on Li‐functionalized silicene is enhanced as compared to pristine silicene, to attain an almost ideal value that still facilitates easy release. In addition, the band gap is found to change sensitively with the CO2 coverage. (© 2016 WILEY‐VCH Verlag GmbH &Co. KGaA, Weinheim)  相似文献   

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The influence of self-absorption on intensity distribution in the rotational structure of the emission d 3IIgII → a 3IIu (0–0) band of C2 radical was studied. The self-absorption effect was used for the determination of C2 concentration in a DC carbon arc. The proposed method is general and may be used to other molecular bands of a similar rotational structure.  相似文献   

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We investigate the self-heating effect of mid-infrared quantum cascade lasers by using a direct-based pulse injecting current and spectroscopy method. Based on the characterization system, the thermal characteristics of gas source MBE grown 8.4μm InP-based GalnAs/AIInAs DFB-QCLs are evaluated. The method and characterization system are also useful in evaluating the thermal characteristics of other types of mid-infrared diode lasers.  相似文献   

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A high‐performance hybrid white organic light‐emitting diode (WOLED) based on a simple structure has been developed. The resulting device exhibits a maximum total current efficiency and power efficiency of 35.7 cd/A and 30.6 lm/W, respectively. Even at a high luminance of 1000 cd/m2, a current efficiency of 32.0 cd/A and a power efficiency of 19.4 lm/W are obtained, suggesting that the device exhibits a low efficiency roll‐off. Besides, the device shows excellent color‐stability during a wide range of luminance and a high color rendering index (CRI) of 83 is obtained. Moreover, the origin of the superior properties is explored comprehensively. Such achieved results demonstrate that high efficiency, low efficiency roll‐off, stable color and high CRI can be simultaneously realized in a simplified hybrid WOLEDs. (© 2014 WILEY‐VCH Verlag GmbH &Co. KGaA, Weinheim)  相似文献   

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