期刊文献+

啁啾匹配OPCPA方案用于消除超短激光脉冲的预脉冲 被引量:2

Chirp-matching OPCPA scheme for eliminating pre-pulse of ultrashort laser pulse
下载PDF
导出
摘要 采用了一种利用啁啾匹配光参量啁啾脉冲放大(OPCPA)技术来消除泵浦脉冲时间窗口内的预脉冲的方法,并对该方法展开了数值模拟研究。分析了泵浦光脉冲形状、预脉冲提前时间等因素对预脉冲消除效果以及信噪比提升情况的影响。通过与传统的非共线OPCPA方案对比,发现啁啾匹配OPCPA方案可以消除掉离主脉冲更近的预脉冲,且它对预脉冲的消除效果受泵浦光脉冲形状的影响较小。 The paper proposes a method using chirp-matching optical parametric chirped pulse amplification (OPCPA) scheme to eliminate the pre-pulse within the gain time window defined by the pump duration is proposed. The effects of the pump pulse shape, as well as the delay time between main pulse and pre-pulse on the improvement of signal-to-noise ratio are analyzed. using numerical simulation Comparing the chirp-matching OPCPA scheme with the conventional noncollinear OPCPA scheme, it is shown that the chirp-matching OPCPA scheme can eliminate a pre-pulse which is much closer to the main pulse, and it depends less on the pump pulse shape.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2012年第2期394-398,共5页 High Power Laser and Particle Beams
基金 国家高技术发展计划项目
关键词 光参量啁啾脉冲放大 啁啾匹配 预脉冲 对比度 信噪比 optical parametric chirped pulse amplification chirp-matching pre-pulse contrast signal-to-noise ratio
  • 相关文献

参考文献13

  • 1Dromey B,Kar S,Zepf M.High contrast for TW-PW lasers-plasma mirrors operated in the near field[R].CLF:Central Laser Facility,2003:76-77.
  • 2Hong K H,Hou B,Nees J A,et al.Generation and measurement of>108intensity contrast ratio in a relativistic kHz chirped-pulseamplified laser[J].Applied Physics B:Lasers,2005,81(4):447-457.
  • 3Tawney J,Richardson M,Adhav R.Electro-optic deflector isolator for short laser pulse contrast enhancement[C] //Conference on Lasersand Electro-Optics.2001:97-98.
  • 4Jullien A,Minkovski N,Saltiel S M.10-10temporal contrast for femtosecond ultraintense lasers by cross polarized wave generation[J].OptLett,2005,30(8):920-922.
  • 5Chvykov V,Rousseau P,Reed S,et al.Generation of 1 011contrast 50TW laser pulses[J].Opt Lett,2006,31(10):1456-1458.
  • 6Jullien A,Albert O,Cheriaux G,et al.Highly efficient temporal cleaner for femtosecond pulses based on cross-polarized wave generation ina dual crystal scheme[J].Appl Phys B,2006,84(3):409-414.
  • 7Doumy G,Quere F,Gobert O,et al.Complete characterization of a plasma mirror for the production of high-contrast ultraintense laserpulses[J].Phys Rev A,2004,69:026402.
  • 8Lévy A,Ceccotti T,Oliveira P,et al.Double plasma mirror for ultrahigh temporal contrast ultraintense laser pulses[J].Opt Lett,2007,32(3):310-312.
  • 9Dubietis A,Butkus R,Piskarskas A P.Trends in chirped pulse optical parametric amplification[J].IEEE J Quantum Electron,2006,12(2):163-172.
  • 10Zeng S G,Zhang B,Dan Y,et al.Analysis and optimization of chirp-compensation OPCPA scheme[J].Opt Commun,2010,283:4054-4058.

同被引文献30

  • 1邓青华,彭翰生,李明中,丁磊,王建军.相位失配法实现倍频稳定输出的模拟分析[J].强激光与粒子束,2007,19(3):394-398. 被引量:2
  • 2Alvarez-PueblaR,Liz-Marz-nL M,GarcíadeAbajoFJ.Lightconcentrationatthenanometerscale[J].TheJournalofPhysicalChemistryLetters,2010,1(16):2428-2434.
  • 3LiuChang,LiFeng,MaLaipeng,etal.Advancedmaterialsforenergystorage[J].AdvancedMaterials,2010,22(8):E28-E62.
  • 4WangXudong.Piezoelectricnanogenerators-harvestingambientmechanicalenergyatthenanometerscale[J].NanoEnergy,2012,1(1):13-24.
  • 5HuRenzong,ZhuMin,WangHui,etal.SnbufferedbyshapememoryeffectofNiTialloysashigh-performanceanodesforlithiumionbatteries[J].ActaMaterialia,2012,60(12):4695-4703.
  • 6FuYongqing,DuHejun,HuangWeimin,etal.TiNi-basedthinfilmsinMEMSapplications:areview[J].SensorsandActuatorsA :Physical,2004,112(2):395-408.
  • 7BansiddhiA,SargeantTD,StuppSI,etal.PorousNiTiforboneimplants:areview[J].ActaBiomaterialia,2008,4(4):773-782.
  • 8GoldmanJR,PrybylaJA.Ultrafastdynamicsoflaser-excitedelectrondistributionsinsilicon[J].PhysicalReviewLetters,1994,72(9):1364-1368.
  • 9DekelE,EliezerS.Measurementsoflaserdrivenspallationintinandzincusinganopticalrecordingvelocityinterferometersystem[J].JournalofAppliedPhysics,1999,86(8):4242-4248.
  • 10ZhigileiLV,GarrisonBJ.Microscopicmechanismsoflaserablationoforganicsolidsinthethermalandstressconfinementirradiationregimes[J].JournalofAppliedPhysics,2000,88(3):1281-1298.

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部