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1.
陈建文 《光学学报》1990,10(9):775-784
基于自由电子激光器的能量模型,在具有螺旋磁场自由电子激光器中,本文采用一种简单的方法处理了强信号条件下能量转换过程.讨论了饱和产生的过程和初始能量色散对饱和影响的机制.这种处理方法也适用于自由电子激光器的谐波辐射.  相似文献   

2.
戴志敏 《中国物理 C》2004,28(7):775-780
给出了双波荡器自由电子激光器的通用理论.在双波荡器自由电子激光器中,引入了一个周期长度非常接近主波荡器中电子束感应加速振荡周期的附加波荡器.推导出了一套自治方程组描述双波荡器中自由电子激光场演变过程,并分别给出了低增益、高增益和饱和三种情况下的解析解.研究表明,适当选择附加波荡器的参数,可以提高自由电子激光器的增益或转换效率  相似文献   

3.
本文提出了一种新型的自由电子激光器—自由电子迴旋谐振激光器。文中给出了这种激光器的电子效率和起振电流表达式。  相似文献   

4.
<正> 一、自由电子激光器的特点自由电子激光器是一种新型激光器。它的基本特点是:不需要气体、液体或固体作为工作物质,而是由高能电子束的能量转变为激光的能量,也可以说自由电子激光器的工作物质就是自由电子。它和已有的激光器比较起来,具有如下优点。  相似文献   

5.
彭良福  杨中海 《光学学报》1995,15(9):209-1214
提出了一种光学速调管自由电子激光器的新方案,并用Madey定理这种新型的谐波自由电子激光器进行了分析和计算。结果表明,这种新型结构的自由电子激光器可以增大高次谐波的辐强度和增益,从而可望使自由电子激光工作在高次谐波上,提供短波长的光输出。  相似文献   

6.
王昌标 《物理学报》1989,38(7):1215-1224
本文提出了一种新型的自由电子激光器—自由电子迴旋谐振激光器。文中给出了这种激光器的电子效率和起振电流表达式。 关键词:  相似文献   

7.
拉曼型自由电子激光器作为一种兆瓦级高功率毫米波、太赫兹波辐射源, 其电子的运动稳定性对整体器件的性能至关重要.本文采用科尔莫戈罗夫熵方法, 以典型的麻省理工学院公布的实验数据为例, 比较研究拉曼型正向导引磁场和反向导引磁场两类自由电子激光器中相对论电子的运动稳定性. 结果表明:摇摆器绝热压缩磁场对电子运动的稳定性无实质性影响, 但对电子运动影响大; 电子束自身场在拉曼型正向导引磁场自由电子激光器中使电子运动稳定性变差, 而在拉曼型反向导引磁场自由电子激光器中则可改善电子运动稳定性. 关键词: 拉曼型自由电子激光器 相对论电子运动稳定性 科尔莫戈罗夫熵 电子束自身场  相似文献   

8.
<正>20世纪70年代,研究人员提出了自由电子激光的概念并建造了远红外自由电子激光器。随后,许多国家都开展了相关的理论研究与实验探索,并于21世纪初建造了X射线波段的自由电子激光器。X射线自由电子激光器是一种基于直线电子加速器的大型科学研究装置,可以产生波长可调的  相似文献   

9.
磁场逐渐增强的摇摆器   总被引:1,自引:0,他引:1       下载免费PDF全文
黄羽  王明常  王之江  J.K.LEE 《物理学报》1997,46(2):287-292
研究了用磁场增强摇摆器来提高自由电子激光器效率的机制.采用KMR方程,考虑空间电荷效应,模拟计算发现自由电子激光器的效率有了很大的提高,而且电子束能散度越大,对提高自由电子激光器效率越有帮助.因此采用磁场增强摇摆器能充分利用加速器的能量来莸得更高的自由电子激光器能量 关键词:  相似文献   

10.
王明常  王之江 《物理》1996,25(5):257-260
文章介绍了拉曼自由电子激光器的应用,概述了我们在拉曼自由电子激光器调谐、新型小周期波荡器、具有分布反馈谐振腔的拉曼自由电子激光振荡器和虚火花放电等方面的研究进展。  相似文献   

11.
姜海  王文涛  冯珂  顾铮先  李儒新 《强激光与粒子束》2022,34(10):104009-1-104009-7
激光等离子体加速器能够在cm尺度内产生GeV量级的高品质电子束,为研制台式化自由电子激光提供驱动源。但是受限于激光等离子体加速中的难点和现有技术发展,电子束的品质难以达到自由电子激光的需求,尤其在稳定性、发散角和能散等方面,阻碍了台式化自由电子激光的研制。介绍了基于激光等离子体加速器的自由电子激光的最新进展,整理了目前高增益自由电子激光实验过程中存在的主要挑战和对应的解决方案与实验进展,并展望未来的发展方向。最近的研究结果证明,通过控制和优化激光等离子体加速器的注入和加速过程产生的高品质电子束可以在指数增益区域实现自发辐射放大,产生高增益的辐射,这也推动基于激光等离子体加速器的自由电子激光研究进入了一个新的阶段。  相似文献   

12.
In order to meet the requirements of the synchrotron radiation users, a fully coherent VUV free electron laser (FEL) has been preliminarily designed. One important goal of this design is that the radiation wavelength can be easily tuned in a broad range (70 170 nm). In the light of the users' demand and our actual conditions, the self-seeding scheme is adopted for this proposal. Firstly, we attempted to fix the electron energy and only changed the undulator gap to vary the radiation wavelength; however, our analysis implies that this is difficult because of the great difference of the power gain length and FEL efficiency at different wavelengths. Therefore, we have considered dividing the wavelength range into three subareas. In each subarea, a constant electron energy is used and the wavelength tuning is realized only by adjusting the undulator gap. The simulation results show that this scheme has an acceptable performance.  相似文献   

13.
The need for tunable radiation sources in the millimeter and submillimeter range for spectroscopic purposes is still a research area of great interest. The tunable radiation source, proposed in this paper, is a special free electron laser device with the prerequisite of low electron energy. The output power density in the millimeter (GHz)-range is of the order of MW/cm2 and in the submillimeter (THz)-range of the order of kW/cm2. The device consists of an electron source with electron optics, wiggler/microwiggler, and a longitudinal magnetic field. The wiggler for the THz-regime has a very short wiggler period of approximately 400 m and could be manufactured with laser micromachining techniques. The free electron laser operates in magnetoresonance and shows surprisingly stable electron orbits and therefore narrow output frequencies. Computational results of the temporal behavior of the output power done with a multi-frequency code are reported.  相似文献   

14.
A method proposed recently is used for the evaluation of the small signal gain in various free electron laser configurations. The theory is applied to (a) the wigglerfree free electron laser with a uniform axial guide magnetic field and arbitrary direction of propagation of the amplified radiation and (b) the free electron laser with the axially modulated guide field (lowbitron). It is demonstrated that the new approach simplifies the gain calculation significantly in comparison with the traditional method.  相似文献   

15.
A simple analysis is given for the optimum length of undulator in a self-seeding free electron laser (FEL). The obtained relations show the correlation between the undulator length and the system parameters. The power required for the seeding in the second part of the undulator and the overall efficiency of monochromatizating the seeding determine the length of the first part of the undulator; the magnitude of seeding power dominates the length of the second part of the undulator; the whole length of the undulator in a self-seeding FEL is determined by the overall efficiency for getting coherent seed, and is about half as long again as that of SASE, not including the dispersion section. The requirement of the dispersion section strength is also analyzed.  相似文献   

16.
Harmonic lasing of low-gain free electron laser oscillators has been experimentally demonstrated in the terahertz and infrared regions. Recently, the low-gain oscillator has been reconsidered as a promising candidate for hard x-ray free electron lasers, through the use of high reflectivity, high-resolution x-ray crystals. In this Letter, it is proposed to utilize a crystal-based cavity resonant at a higher harmonic of the undulator radiation, together with phase shifting, to enable harmonic lasing of the x-ray free electron laser oscillator, and hence allow the generation of hard x-ray radiation at a reduced electron beam energy. Results show that fully coherent free electron laser radiation with megawatt peak power, in the spectral region of 10-25 keV, can be generated with a 3.5 GeV electron beam.  相似文献   

17.
黄诚  钟明敏  吴正茂 《物理学报》2019,68(3):33201-033201
利用三维经典系综模型系统地研究了不同强度线偏振激光脉冲驱动下He原子的非次序双电离.结果表明在非次序双电离中回碰电子的返回次数、两电子的碰撞距离和电子对的关联特性都强烈地依赖于激光强度.对于750 nm,随着激光强度的增加,单次返回诱导的非次序双电离事件逐渐减少,而多次返回事件的比例显著增加.对于1500 nm,随着激光强度的增加,前三次返回诱导的非次序双电离事件都会减少,返回次数大于3的轨道对非次序双电离的贡献逐渐增加.这是因为在高强度下每次返回过程中母核的库仑吸引对返回电子横向偏离的补偿较弱,所以需要更多次的返回来补偿电子的横向偏离以实现再碰撞.轨道分析表明非次序双电离中两电子的碰撞距离随激光波长和强度的增加而逐渐减小.最后讨论了非次序双电离中电子对的关联特性对返回次数的依赖.  相似文献   

18.
玻璃表面层光学参数分布的研究   总被引:3,自引:3,他引:0  
刘晓林  梁培辉 《光学学报》1997,17(8):124-1129
利用并改进平板玻璃两面P偏振光反射光强比的测量来确定玻璃表面光学参数的方法,测量了平板玻璃两面P偏振光反射光强比γ与入射角θi的关系曲线,运用新的表面层模型进行数据模拟,获得了表面层的光学参数分布。  相似文献   

19.
Wang C  Jiang L  Wang F  Li X  Yuan Y  Xiao H  Tsai HL  Lu Y 《J Phys Condens Matter》2012,24(27):275801
A real-time and real-space time-dependent density functional is applied to simulate the nonlinear electron-photon interactions during shaped femtosecond laser pulse train ablation of diamond. Effects of the key pulse train parameters such as the pulse separation, spatial/temporal pulse energy distribution and pulse number per train on the electron excitation and energy absorption are discussed. The calculations show that photon-electron interactions and transient localized electron dynamics can be controlled including photon absorption, electron excitation, electron density, and free electron distribution by the ultrafast laser pulse train.  相似文献   

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