首页> 外文会议>Photonics, devices, and systems VII >All-solid-state, synchronously pumped, ultrafast BaWO4 Raman laser with long and short Raman shifts generating at 1180, 1225, and 1323 nm
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All-solid-state, synchronously pumped, ultrafast BaWO4 Raman laser with long and short Raman shifts generating at 1180, 1225, and 1323 nm

机译:全固态,同步泵浦,超快BaWO4拉曼激光器,具有长短拉曼位移,可产生1180、1225和1323 nm

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摘要

A lot of attention is currently focused on synchronously pumped, extra-cavity crystalline Raman lasers generating one or two Stokes Raman components in KGW or diamond Raman-active crystals, and also generating additional components of stimulated polariton scattering in lithium niobate crystal having both cubic and quadratic nonlinearities. In this contribution we report on generation of more than two Stokes components of stimulated Raman scattering with different Raman shifts in the all-solid-state, synchronously pumped, extra-cavity Raman laser based on the Raman-active a-cut BaWO4 crystal excited by a mode-locked, 220 nJ, 36 ps, 150 MHz diode side-pumped Nd:GdV04 laser generating at the wavelength of 1063 nm. Excitation by the pumping radiation polarized along the BaW04 crystal optical axis resulted in the Raman generation with not only usual (925cm-1), but also additional (332cm-1) Raman shift. Besides the 1180-nm first and 1323 nm second Stokes components with the Raman shift of 925cm -1 from the 1063nm fundamental laser wavelength, we have achieved generation of the additional 1227 nm Raman component with different Raman shift of 332cm-1 from the 1180nm component. At the 1227 nm component the strongest 12-times pulse shortening from 36ps down to 3ps was obtained due to shorter dephasing time of this additional Raman line (3ps for the 332-cm-1 line instead of 6.5ps for the 925cm-1 line). It has to be also noted that the 1225 nm generation is intracavity pumped by the 1179 nm first Stokes component resulting in the strongest pulse shortening close to the 332cm-1 line dephasing time (3ps). Slope efficiency of three Stokes components generation exceeded 20%.
机译:当前,许多注意力集中在同步泵浦,腔外晶体拉曼激光器上,该激光器在KGW或金刚石拉曼活性晶体中产生一个或两个斯托克斯拉曼分量,并在铌酸锂晶体中产生激发极化子散射的附加分量,该晶体具有立方晶格和立方晶格。二次非线性。在此贡献中,我们报告了在基于拉曼活性a切BaWO4晶体的全固态,同步泵浦,腔外拉曼激光器中,产生了超过两个斯托克斯分量的,具有不同拉曼位移的受激拉曼散射,该激光由锁模的220 nJ,36 ps,150 MHz二极管侧泵浦Nd:GdVO4激光器,产生的波长为1063 nm。沿BaWO4晶体光轴偏振的泵浦辐射激发产生的拉曼光谱不仅具有通常的(925cm-1),而且具有额外的(332cm-1)拉曼位移。除了从1063nm基本激光波长产生925cm -1的1180 nm第一斯托克斯分量和从1323 nm第二斯托克斯分量以来,我们还实现了另外的1227 nm拉曼分量的产生,其与1180nm分量具有不同的332cm-1拉曼位移。在1227 nm分量处,由于此附加拉曼线的移相时间更短(332-cm-1线为3ps,而不是925cm-1线为6.5ps),因此获得了最强的12倍脉冲从36ps缩短至3ps。 。还必须注意的是,腔内腔是由1179 nm第一斯托克斯分量泵浦的腔内腔,导致最强的脉冲缩短到332cm-1线移相时间(3ps)附近。三个Stokes组件生成的边坡效率超过20%。

著录项

  • 来源
    《Photonics, devices, and systems VII》|2017年|106030Y.1-106030Y.6|共6页
  • 会议地点 Prague(CZ)
  • 作者单位

    Czech Technical University in Prague, FNSPE, Bfehova 7, 11519, Prague 1, Czech Republic;

    Czech Technical University in Prague, FNSPE, Bfehova 7, 11519, Prague 1, Czech Republic;

    Czech Technical University in Prague, FNSPE, Bfehova 7, 11519, Prague 1, Czech Republic;

    Prokhorov General Physics Institute of Russian Academy of Sciences, Vavilova 38, 119991, Moscow, Russian Federation;

    Prokhorov General Physics Institute of Russian Academy of Sciences, Vavilova 38, 119991, Moscow, Russian Federation;

    Prokhorov General Physics Institute of Russian Academy of Sciences, Vavilova 38, 119991, Moscow, Russian Federation,National University of Science and Technology MISiS, Leninskiy prospect 4, 119049, Moscow, Russian Federation;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    BaW04 laser; stimulated Raman scattering; synchronous pumping; first and second Stokes component; pulse shortening;

    机译:BaW04激光;拉曼散射同步抽水;第一和第二斯托克斯部分;脉冲缩短;

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