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The high power diode end-pumped Q-switched Nd:YVO_4/KTP red laser was demonstrated by using a simple plano-concave cavity. At the repetition rate of 15kHz, the maximun average output power of 1.37W was attained, with the corresponding pulse width of 33ns.

采用简单的平凹腔结构以及KTP倍频晶体实现了全固态高功率Nd:YVO_4/KTP腔内倍频671nm红光输出,其最大平均输出功率为1.37W,相应的重复频率和脉冲宽度分别为15kHz和33ns。

The high-power laser diode array has many advantages such as compactness, low cost, high photoelectric efficiency and high output of power et. al., but the output beam quaintly of the LDA is very poor.

高功率半导体激光器列阵具有结构紧凑,成本低,光电转换效率高,输出功率大等特点,但是其输出光束质量较差。

In the experiments, the output power of each ytterbium fiber amplifier is not less than 1 W and the total output power of the three amplifiers is not less than 3 W.

首次在国内用外差法实现了三路掺镱光纤放大器的相干合成输出,其中每路光纤放大器的输出功率≥1 W,三路总功率≥3 W。

Based on the single-particle theory, we inspect the effects of harmonic wiggler field components on the outputs of free electron lasers (including the components of fundamental and harmonic frequecies), and derive the complete simulation equations for millimeter wave FELs. Meanwhile under the condition that the harmonic wiggler fields are much smaller than the fundamental one, we describe the effects simulated. Using the improved 3D WAGFEL code.

在单粒子理论的基础上,详细考察了摇摆场谐波分量对自由电子激光输出功率的影响,给出了完整的模拟方程组,并在摇摆场谐波振幅远小于其基波振幅值的假定下,利用三维WAGFEL程序和毫米波自由电子激光放大器的参数模拟计算了摇摆场谐波对自由电子激光基频输出功率的影响。

The maximum output power of 1.63 W is obtained with output transmissivity of 10%, absorbed pump energy of 9 W, and slope efficiency of 23.2%.

当输出透射率为10%,吸收的抽运功率为9 W时,激光器获得最大的激光输出功率为1.63 W,相应的斜率效率为23.2%。

The third, since the electrons in the plasma are accelerated and ions move together, some harmful effects are also observed, such as both output powers of RBWO and FEL decrease versus the increase of plasma density. The results agree with the results of linear fluid model. In the unmagnetized plasma-loaded RBWO-FEL, output powers of pump source and FEL are obtained only in a narrow plasma density range and both have maximum. The results of simulation are in good agreement with the experimental results.

模拟分析了磁化等离子体填充的RBWO-FEL,尽管没有发现等离子体填充后RBWO及FEL输出功率的成倍增长,但是观察到等离子体的引入对RBWO-FEL产生以下影响:泵波及FEL的辐射频率的线宽得到明显增加;在较高的等离子体密度下,TM〓模将会被完全抑制;首次观察到T-G模振荡及功率输出,结果同线性理论计算结果基本一致;等离子体中的电子被加速及背景离子的移动将对器件工作产生不利影响。

To realize single longitudinal-mode of the fiber laser, a ring configuration is devised. The single longitudinal-mode operation is realized by using a fiber Bragg grating as wavelength-selective element and a unpumped 2m-loog erbium-doped fiber which can produce stading-wave saturation effects in the cavity, Its tunable wavelength range is 42 nm, the output power is more than 3.5 dBm and the stability is less than ±0.005 dB.

为了实现光纤激光的单纵模,提出了一种环形腔结构,采用可调谐光纤Bragg光栅作为波长选择器件,与2m未抽运掺Er光纤产生驻波饱和效应,在1.55m波长处形成42nm激光输出,输出功率大于3.5dBm,功率稳定性优于士0.005dB。

The Engineer shall measure the RPM of the Main Engine, draft, compression pressure in the cylinder, maximum pressure in the cylinder, load indicator, exhaust temperature, scavenging pressure and temperature, rpm of the supercharger, etc. to grasp the operating condition of the Main Engine, and also calculate

轮机员须测取主机转速、汽缸内的压缩压力、最大爆发压力、负荷指示、排烟温度、扫气压力和温度、透平转速等,获得主机操作工况,同时计算主机输出功率、燃油消耗率、汽缸油消耗率等,根据计算准备&主机输出功率报告&,这些必须经过大管轮的检查和验证,并递交轮机长。

The results indicated that BaCe0.8Ho0.2O(subscript 3-α) sinters are of single-phase structures of orthorhombic perovskite. In the temperature range of 600~1000℃, the nonstoichiometric materials (x=1.03 and 0.97) have higher conductivities in wet hydrogen and wet air and better performances of hydrogen-air fuel cells than the stoichiometric one (x=1). In this series, BaCe0.8Ho0.2O(subscript 3-α) has the highest conductivities 2.10×10^(-2Scm^(-1) in wet hydrogen, 3.46×10^(-2) Scm^(-1) in wet air, at 1000℃ and the maximum power output density 122 mWcm^(-2 at 1000℃.

结果表明,在600~1000℃温度范围内、湿润氢气和湿润空气气氛中,该系列材料的电导率随温度和钡离子含量的变化均与以该系列材料为固体电解质的氢-空气燃料电池性能随温度和钡离子含量变化的次序一致,即:非化学计量组成材料BaCe0.8Ho0.2O(下标 3-α)(x=1.03, 0.97)具有较化学计量组成材料BaCe0.8Ho0.2O(下标 3-α)(x=1)高的电导率和氢-空气燃料电池输出功率密度,其中BaCe0.8Ho0.2O(下标 3-α)有最高的电导率(1000℃时、在湿润的氢气气氛中:2.10×10^(-2)Scm^(-1);在湿润的空气气氛中:3.46×l0^(-2)Scm^(-1))和最大的氢-空气燃料电池输出功率密度(1000℃时:122mWcm^(-2))。

Although little change in force only in well-tuned engine after the replacement of a set of the exhaust system, but the power output of the change is obvious, 1.6 hdi engine's power from 81 kilowatts to 104 kilowatts has been elevated, and another 1.6 l engine surge from 112 kilowatts to 138 kilowatts of output power.

动力方面虽然变化不大,仅在精心调校引擎后更换了全套的排气系统,但是动力输出的改变却显而易见,1.6hdi引擎的功率由81千瓦被提升至104千瓦,而另一款1.6l引擎则由112千瓦暴涨至138千瓦的输出功率

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