共查询到16条相似文献,搜索用时 171 毫秒
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描述了在BBOⅠ类相位匹配的飞秒光参量放大(OPA)中,利用非共线结构和倾斜抽运光的脉 冲波面来完全补偿三波群速失配的方法.理论计算了三波群速匹配时,非共线角、相位匹配 角、抽运光的脉冲波面倾斜角随信号光波长的变化,并分析了对抽运光光斑尺寸的要求和对 空间走离长度的影响.结果表明,利用该方法不仅能够实现最大的参量带宽,而且能够完全 补偿飞秒OPA中三波的群速失配.此外,选取合适的抽运光光斑尺寸和非线性晶体的长度对提 高参量增益也至关重要.
关键词:
群速匹配
非共线相位匹配
脉冲波面倾斜
飞秒光参量放大 相似文献
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《光学学报》2015,(8)
提出了一种新的两级非共线相位匹配光参量放大方案,两级光参量放大分别采用不同的相位匹配条件,充分利用非线性晶体的相位匹配能力和增益光谱范围,可以实现增益带宽接近一个倍频程的光参量放大。并以4.5 mm厚的偏硼酸钡(BBO)晶体和波长为532 nm、强度为5 GW/cm2的抽运光源为例进行了模拟计算,结果表明,该方案可以实现波长范围在710~1190 nm、增益带宽为480 nm的信号光放大,信号光光谱宽度达到0.75个倍频程,再压缩后傅里叶限脉冲的时间宽度约为5 fs,约等于1.6倍的光振荡周期。计算了光参量放大过程中的相位畸变,以及该相位畸变对再压缩后信号光脉冲时间波形的影响。研究结果可以为实现周期量级光参量放大的设计提供理论依据。 相似文献
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光参量啁啾脉冲放大(OPCPA)是超短激光脉冲领域的重要技术之一,增大增益带宽对提高OPCPA的转换效率、实现宽带光参量放大具有重要的意义.本文将光束偏转和非共线OPCPA有机结合,提出了基于光束偏转的扫描式宽带OPCPA模型.分析了通过光束偏转来时刻改变非共线角,以保证各频率成分的相位匹配,从而增大增益带宽的基本原理.采用提出的扫描式宽带OPCPA,针对800 nm中心波长、带宽约为100 nm信号光的光参量放大进行了数值计算.结果表明:经过扫描式OPCPA后,信号光的带宽与放大之前几乎相同,光谱没有窄化;扫描式OPCPA比固定非共线角方式的放大极大地增加了增益带宽和转换效率,实现了宽带的光参量放大;要满足信号光各频率成分的相位匹配,达到最大的增益带宽和转换效率,需要尽量减小加载到钽铌酸钾(KTa_(1-x) Nb_xO_3, KTN)电光晶体上的电压抖动和电压延时. 相似文献
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周期性极化铌酸锂晶体中半非共线型宽带光学参变放大理论研究 总被引:1,自引:0,他引:1
基于周期性极化铌酸锂晶体(PPLN)的准相位匹配光参变放大过程,通过倾斜周期极化铌酸锂晶体中极化域(极化光栅)一定角度,实现了介于共线匹配方式和非共线匹配方式之间的一种半非共线型准相位匹配方式,并以该匹配方式下的各光矢量几何关系得出相位匹配曲线,找到在特定抽运光和信号光波长下能获得宽带增益放大的周期极化长度。并研究其极化倾斜角度与温度特性。模拟计算表明,在合适的角度与温度条件下,该方式可以532 nm抽运光抽运的信号光在800 nm和1064 nm处均获得宽带光参变放大。 相似文献
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为了消除群速失配对参量放大的不利影响,描述了利用脉冲波面倾斜与非共线相位匹配相结 合,完全补偿飞秒光参量放大(OPA)中三波群速失配的新方法.计算了在BBOⅠ类、Ⅱ类相 位匹配条件下, 三波实现群速匹配时,相位匹配角、脉冲波面倾斜角以及非共线角随信号 光波长的变化.并分析了三波群速匹配对空间走离长度、参量增益和参量带宽的影响.结果表 明,在BBOⅠ类、Ⅱ类相位匹配条件下,利用该方法均能实现飞秒OPA连续调谐时三波的群速 匹配,从而大大增加了三波的有效互作用长度,为能够获得高增益,窄脉宽的参量光脉冲提 供了理论依据和指导.
关键词:
群速匹配
脉冲波面倾斜
非共线相位匹配
飞秒光参量放大 相似文献
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对基于新型非线性晶体BiB3O6(BIBO)的飞秒光参量变换过程的参量特性进行了研究. 计算了BIBO晶体三个光学主平面内的相位匹配条件和有效非线性系数,确定了克尔透镜锁模钛宝石激光器的基频光与倍频光抽运时最佳的光学主平面和相位匹配方式,并分析了三波的时间走离和空间走离,以及信号光的参量增益和带宽. 为利用基于BIBO晶体的飞秒光参量技术获得高能量、宽调谐、窄脉宽的光源提供理论依据和实验指导.
关键词:
3O6')" href="#">BiB3O6
光参量变换
共线相位匹配
光学主平面 相似文献
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计算了MgO:LiNbO3晶体中,共线与非共线相位匹配光参量放大产生超短中红外激光脉冲过程中的相位匹配曲线、有效非线性系数以及时间和空间走离情况。结果表明,采用非共线相位匹配方式,可以实现三波间群速度匹配;在抑制了泵浦光与信号光之间的空间走离的同时加大了泵浦光与闲频光之间的空间走离,但这种影响可以忽略;同时非共线角的引入使相位匹配角增大,提高了有效非线性系数。因此,非共线角的引入在不影响空间走离的情况下,有效补偿超短中红外参量放大过程中的时间走离,有利于参量放大转换效率的提高。 相似文献
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We present simultaneous phase matching of optical parametric oscillator (OPO) and difference frequency generation (DFG), using a noncollinear interaction in periodically poled crystal with single grating. Selecting proper grating period Λ and titled angle ξ between the grating vector G and the optical axis of crystal, the noncollinear scheme provides double phase matching solutions over continuous regions of the midwave infrared spectrum. At certain wavelength regions, for DFG process the group velocities between interaction pulses are matching and the phase matching bandwidth reaches maximum. Selecting the different grating period, the broadband midwave tuning and better gain spectrum can be obtained at different wavelength range. For the certain period grating the conversion efficiency is higher. Hence, using the double phase matching configuration, the broadband tunable midwave infrared wave can be produced in single grating. But the configurations have a relatively narrow angular bandwidth. 相似文献
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Polychromatic optical parametric generation by simultaneous phase matching over a large spectral bandwidth 总被引:2,自引:0,他引:2
The parametric generation of broad spectral bandwidths by the use of suitable phase-matching geometries is reported. Greater than 100-nm simultaneous bandwidth in the visible is generated in a collimated signal beam from a novel, noncollinear phase-matching geometry in a beta-barium borate optical parametric oscillator, which is pumped by the collimated output of a Q -switched and frequency-tripled Nd:YAG laser. Dispersive cavity tuning of the optical parametric oscillator by use of a rotatable Littrow-mounted grating, with a static crystal and pump configuration, is also described. A tunable bandwidth of >100 nm is also demonstrated. 相似文献
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Baozhen Zhao Yuxin Leng Cheng Wang Yongliang Jiang Juan Du Zhizhan Xu 《Optics Communications》2006,259(1):137-141
Optical parametric chirped pulse amplification with different pump wavelengths was investigated using LBO crystal, at signal central wavelength of 800 nm. According to our theoretical simulation, when pump wavelength is 492.5 nm, there is a maximal gain bandwidth of 190 nm centered at 805 nm in optimal noncollinear angle using LBO. Presently, pump wavelength of 492.5 nm can be obtained from second harmonic generation of a Yb:Sr5(PO4)3F laser. The broad gain bandwidth can completely support ∼6 fs with a spectral centre of seed pulse at 800 nm. The deviation from optimal noncollinear angle can be compensated by accurately tuning crystal angle for phase matching. The gain spectrum with pump wavelength of 492.5 nm is much better than those with pump wavelengths of 400, 526.5 and 532 nm, at signal centre of 800 nm. 相似文献
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T.-J. Wang Z. Major I. Ahmad S. A. Trushin F. Krausz S. Karsch 《Applied physics. B, Lasers and optics》2010,100(1):207-214
A scheme for the generation of an ultra-broadband, near-infrared beam from a Ti:sapphire source is proposed with the aim to
serve as seed pulse of a petawatt-field synthesizer (Major et al. in Rev. Laser Eng. 37:431, 2009). The idler beam of a noncollinear optical parametric amplifier, pumped at the second harmonic of the Ti:sapphire output,
displays the required bandwidth, albeit with an inherent angular chirp owing to the noncollinear geometry. We propose a scheme
for the compensation of this angular dispersion which consists of a diffraction grating, a telescope and a deformable mirror.
The suitability of this scheme is discussed quantitatively and preliminary experimental findings are shown. 相似文献
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Using a very simple and straightforward approach we derive the condition to be satisfied for achieving wavelength-insensitive broadband phase matching in a type-I noncollinear optical parametric amplifier (NOPA), required for the generation of ultra-fast laser radiation. Nonlinear optical properties of a relatively newly grown crystal Li2B4O7 (LB4) have also been studied and we found that this crystal satisfies the condition required to realize the broadband phase matching and is suited for the generation of tunable visible–near-infrared ultra-fast laser radiation employed in a 395-nm-pumped type-I NOPA. The phase-matching bandwidths of type-I NOPAs in different borate-group crystals, such as BBO, CLBO, and KABO, are also numerically estimated. The values are 157, 164, 152, and 174 THz for 1-mm-thick BBO, CLBO, KABO, and LB4 crystals, with the noncollinear angles between the input pump and the signal beams 3.7°, 3.0°, 3.4°, and 2.9°, respectively, for the signal wavelengths centered at 630 nm. In addition to the largest bandwidth, LB4 crystal has several other attractive properties to be used in optical parametric applications, such as high laser damage threshold, wide optical transmission, easy crystal growth to excellent optical quality with large sizes, easy treatment of cutting and polishing, and nonhygroscopicity. PACS 42.65.Yj; 42.65.Re; 42.70.Mp 相似文献
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Matching of both group-velocity and pulse-front for ultrabroadband three-wave-mixing with noncollinear angularly dispersed geometry 总被引:2,自引:0,他引:2
H. Liu W. Zhao Y. Yang H. Wang Y. Wang G. Chen 《Applied physics. B, Lasers and optics》2006,82(4):585-594
Ultrabroadband three-wave-mixing is analyzed using the concept of pulse-front-tilt, which is achieved by means of angular dispersion. The results show exactly matching of both group-velocity and pulse-front is the important criterion for constructing an ultrabroadband TWM. A theoretical model is developed, in which the group velocities, noncollinear angles, spatial walk-off angles, linear angular spectral dispersion coefficients and pulse-front tilted angles are suitably linked to each other. Expressions for finding ideal phase matching angle, noncollinear angle and linear angular spectral dispersion coefficient are obtained. Specific numerical results are presented for crystals BBO and LBO with type-I noncollinear angularly dispersed geometry. The numerical simulations verify that our model is valid for designing a practicable ultrabroadband parametric process. PACS 42.65.Yj; 42.65.Lm; 42.65.Ky; 42.60.By 相似文献