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1.
KrF激光脉冲整形研究   总被引:2,自引:1,他引:2  
 实验研究了脉冲堆积法对KrF激光的整形能力。利用受激布里渊散射(SBS)压缩脉冲获得了脉宽为3~5 ns的短脉冲,用4束激光堆积获得了脉宽为10~15 ns、平顶宽度为5~10 ns的整形脉冲。利用实测SBS脉冲数据,对脉冲堆积法进行了数值模拟,模拟的脉冲宽度为12.7 ns,平顶宽度为7.7 ns,该结果与实验相符。对脉冲堆积法的任意整形能力进行了模拟,讨论了脉冲宽度变化对整形的影响,发现脉宽变化在5%以内时,对整形脉冲的影响较小。对整形脉冲的放大进行了定性研究,结果表明:平顶脉冲通过放大器后,前沿部分放大较多,由于饱和作用,后沿放大较少;如果前端整形脉冲前沿为斜坡状,放大后可以得到近平顶的脉冲。  相似文献   

2.
Phase-manipulated ultrafast laser pulses and temporally tailored pulse trains with THz repetition rates are promising new tools for quality micromachining of brittle dielectrics, allowing to adapt the laser energy delivery rate to the material properties for optimal processing. Different materials respond with specific reaction pathways to the sudden energy input depending on the efficiency of electron generation and on the ability to release the energy into the lattice. The sequential energy delivery with judiciously chosen pulse trains may induce softening of the material during the initial steps of excitation and change the energy coupling for the subsequent steps. We show that this can result in lower stress, cleaner structures, and allow for a material-dependent optimization process. Received: 7 October 2002 / Accepted: 20 January 2003 / Published online: 28 May 2003 RID="*" ID="*"Corresponding author. Fax: +49-30/6392-1229, E-mail: stoian@mbi-berlin.de RID="**" ID="**"Now at Katana Technologies GmbH, Albert-Einstein-Ring 7, 14532 Kleinmachnow, Germany  相似文献   

3.
Pulse shaping using nonlinear polarization rotation has been analyzed in detail. It is found that there is an optimal, power-dependent polarization ellipticity for the maximum nonlinear transmission. It is also found that the polarization ellipticity should be kept smaller than 0.414 so that higher nonlinear transmission can be obtained. Compared to the well-known scheme of Stolen et al., the peak transmission can be increased more than three times, from 7% to 24%, for an incident power that generates self-phase modulation (φspm) of π.  相似文献   

4.
Two simple passive systems are presented for modifying the gaussian pulse train envelope produce by a dye-mode-locked Nd: YAG laser oscillator. The first system truncates the gaussian to produce a flat-topped envelope; the second system sharpens the envelope to a triangular form. The second system is analyzed as an intensity-dependent filter.  相似文献   

5.
6.
The effect of ultra-short laser-induced morphological changes upon irradiation of silicon with double pulse sequences is investigated under conditions that lead to mass removal. The temporal delay between 12 double and equal-energy pulses (E p=0.24 J/cm2 each, with pulse duration t p=430 fs, 800 nm laser wavelength) was varied between 0 and 14 ps and a decrease of the damaged area, crater depth size and periodicity of the induced subwavelength ripples (by 3–4 %) was observed with increasing pulse delay. The proposed underlying mechanism is based on the combination of carrier excitation and energy thermalization and capillary wave solidification and aims to provide an alternative explanation of the control of ripple periodicity by temporal pulse tailoring. This work demonstrates the potential of pulse shaping technology to improve ultra-fast laser-assisted micro/nanoprocessing.  相似文献   

7.
Shaping the temporal profile of subterawatt optical pulses with a femtosecond duration is demonstrated with the help of a programmable pulse shaper, which is based on a liquid–crystal spatial light modulator. For safe operation, we place the pulse shaper between regenerative and multipass amplifiers. We generate double pulses, whose respective component pulses have 0.27-TW peak power and 74-fs duration. The possibility of variously-shaped multiterawatt pulses is also discussed.  相似文献   

8.
Most previous studies have employed surface patterning to improve the performance of lubrication systems. However, few have experimentally analyzed improved effects on friction reduction in SiC mechanical seals by ultra-fast laser pulse texturing. This work applies surface texturing on a non-contact mechanical seal and analyzes the characteristics of the resultant surface morphology. A femtosecond laser system is employed to fabricate micro/nanostructures on the SiC mechanical seal, and generates microscale-depth stripes and induces nanostructures on the seal surface. This work examines the morphology and cross section of the SiC nanostructures that correspond to the different scanning speeds of the laser pulse. Results show that varying the scanning speed enables the application of nanostructures of different amplitudes and widths on the surface of the seal. The friction coefficient of the introduced SiC full-textured seal is about 20% smaller than that of a conventional SiC mechanical seal. Hence, femtosecond laser texturing is effective and enables direct fabrication of the surface micro/nanostructures of SiC seals. This technique also serves as a potential approach to lubricating applications.  相似文献   

9.
An analysis is made of an rf pulse shaping system containing a storage cavity and an extraction system which can be switched from antiresonant to resonant operation. Relations are given for the pulse shape, gain, and efficiency. Zh. Tekh. Fiz. 67, 139–141 (November 1997)  相似文献   

10.
The development of the thermal lens in a 60 μs long pulse dye laser is described. The use of a resonator with a spherical mirror permits to obtain reliable output pulses at a conversion efficiency of 0.3%.  相似文献   

11.
We report on controllable pulse shaping in a Yb-doped stretched-pulse fiber laser followed by a high-power chirped pulse amplifier. We demonstrate that the pulses after an extra-cavity grating pair change their intensity profile from Lorentz to Gaussian and then to sech2 shapes by adjusting the intra-cavity polarization through a quarter-wave plate inside the fiber laser cavity. The laser pulses with different pulse shapes exhibit pulse-to-pulse amplitude fluctuation of -- 1.02%, while the sech2-shaped pulse train is provided with a more stable free-running repetition rate as a result of the stronger self-phase modulation in the fiber laser cavity than Lorentz- and Gaussian-shaped pulse trains.  相似文献   

12.
高功率激光整形脉冲波形控制技术   总被引:1,自引:1,他引:1       下载免费PDF全文
 针对神光-Ⅲ原型装置物理实验要求的三台阶整形脉冲(三个台阶的脉冲宽度比为1.5∶1.0∶0.5,强度比为1∶4∶16,脉冲总能量为500 J),并根据该装置的系统构成和具备任意脉冲整形技术,开展了高功率激光整形脉冲波形控制技术研究,通过对基频光段的增益饱和效应和三倍频光的频率转换过程的分析,获得了脉冲时间波形在传输、放大及频率转换过程中的一些变化特点,在此基础上建立了一套简单的预测模型。经过反复迭代计算和多次全系统联机实验获得了实验结果,并在物理实验中得到了应用,初步形成了高功率激光整形脉冲波形的控制方法。  相似文献   

13.
针对神光-Ⅲ原型装置物理实验要求的三台阶整形脉冲(三个台阶的脉冲宽度比为1.5∶1.0∶0.5,强度比为1∶4∶16,脉冲总能量为500 J),并根据该装置的系统构成和具备任意脉冲整形技术,开展了高功率激光整形脉冲波形控制技术研究,通过对基频光段的增益饱和效应和三倍频光的频率转换过程的分析,获得了脉冲时间波形在传输、放大及频率转换过程中的一些变化特点,在此基础上建立了一套简单的预测模型。经过反复迭代计算和多次全系统联机实验获得了实验结果,并在物理实验中得到了应用,初步形成了高功率激光整形脉冲波形的控制方法。  相似文献   

14.
Summary We present a new, simple and cost effective scheme for the measure of the second-order correlation function of Nd-YAG laser second-harmonic (532 nm) pulses. We measure the transmission of a probe beam in a cell containing 6G-Rhodamine solution bleached by a counterpropagating pump beam. Under a convenient choice of experimental parameters, we can measure also the contribution of third-order correlation function.  相似文献   

15.
Di Yang 《Optics Communications》2011,284(15):3748-3758
We investigate the benefits of estimating the group delay spectrum (as opposed to the phase spectrum) on the performance of an adaptive laser pulse shaping experiment. We use both numerical and experimental approaches, and consider different figures of merit such as efficiency, noise robustness, convergence speed, repeatability, fitness sensitivity, and parameter insensitivity. While primarily focused on the process of broadband second harmonic generation, we also study a resonant third order nonlinear process. Our results show an overall superiority of delay-based formulation in the cases under study (compared to a conventional phase-based formulation) for adaptive laser pulse shaping.  相似文献   

16.
We present the design concept of a setup of a pulse shaper to be used for high-power femtosecond lasers. The pulse shaper is constructed from a high-damage threshold fused-silica spatial light modulator and a 4-f optical system based on the design concept to avoid optical damage. We have successfully demonstrated a pulse compression of 20 fs, 5 mJ pulses obtained from a 1 kHz repetition rate Ti:sapphire chirped pulse amplification system at an average power of 5 W.  相似文献   

17.
Frumker E  Silberberg Y 《Optics letters》2007,32(11):1384-1386
We introduce a programmable, high-rate scanning femtosecond pulse shaper based on a two-dimensional liquid crystal on a silicon spatial light modulator (SLM). While horizontal resolution of 1920 addressable pixels provides superior fidelity for generating complex waveforms, scanning across the vertical dimension (1080 pixels) has been used to facilitate at least 3 orders of magnitude speed increase as compared with typical liquid-crystal SLM-based pulse shapers. An update rate in excess of 100 kHz is demonstrated.  相似文献   

18.
A new adaptive beam intensity shaping technique based on the combination of a 19-element piezo-electricity deformable mirror (DM) and a global genetic algorithm is presented. This technique can adaptively adjust the voltages of the 19 actuators on the DM to reduce the difference between the target beam shape and the actual beam shape. Numerical simulations and experimental results show that within the stroke range of the DM, this technique can be well used to create the given beam intensity profiles on the focal plane.  相似文献   

19.
An efficient pulse shaping method using counter-propagating pulses in the femtosecond regime is proposed and investigated. The effects of pump pulse power and pulsewidth on probe pulse are studied in counter-propagation scheme. It is shown that, with the proposed method, output probe pulse temporal and spectral peak shift due to femtosecond nonlinearities can be compensated, while the output pulse is amplified sufficiently. Furthermore, in relatively high power regime, the probe pulsewidth and time-bandwidth product are improved using counter-propagating pump pulse.  相似文献   

20.
We present complete experimental characterization of the temporal shape of an intense ultrashort 200-TW laser pulse driving a laser wakefield. The phase of the pulse was uniquely measured by using (second-order) frequency-resolved optical gating. The pulses are asymmetrically compressed and exhibit a positive chirp consistent with the expected asymmetric self-phase-modulation due to photon acceleration or deceleration in a relativistic plasma wave. The measured pulse duration decreases linearly with increasing length and density of the plasma, in quantitative agreement with the intensity-dependent group velocity variation in the plasma wave.  相似文献   

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