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High-order harmonic generation using quasi-phase matching and two-color pump in the plasmas containing molecular and alloyed metal sulfide quantum dots

机译:在含有分子和合金金属硫化物量子点的等离子体中使用准相匹配和双色泵的高阶谐波产生

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摘要

As high-order harmonic emitters, quantum dots are produced through laser-induced plasmas. Subsequently, we generate high-order harmonics with 800-nm and 30-fs pulses from laser-produced plasmas containing quantum dots of different metal sulfides (Ag2S, CdS, and Cd0.5Zn0.5S). The high-order harmonic generation is analyzed using different approaches, including two-color (800 nm + 400 nm) pump, application of alloyed quantum dots, and quasiphase matching of interacting waves. We discuss the self-phase modulation induced splitting of harmonics, the difference in the application of thick and thin crystals for second harmonic (400 nm) emission during two-color pumping of the quantum dot plasma, the spatial modulation of the quantum dot plasma for quasiphase matching, and the comparison of harmonic yields from monomer and quantum dot plasmas. This study allows us to determine the mechanisms of coherent extreme ultraviolet radiation generation using a few nanometer-sized emitters as well as optimal methods for further enhancing the high-order harmonic generation efficiency. Published under license by AIP Publishing.
机译:作为高阶谐波发射器,量子点通过激光诱导的等离子体产生。随后,我们通过含有不同金属硫化物的量子点(Ag2s,Cd和Cd0.5_0.5s)的量子点的激光产生的等离子体产生高阶次谐波和30-FS脉冲。使用不同的方法分析高阶谐波产生,包括双色(800nm + 400nm)泵,合金量子点的应用,以及相互作用波的Quasiphase匹配。我们讨论了谐波的自相调制诱导分裂,厚度晶体施加厚度晶体(400nm)发射在量子点等离子体的两色泵送期间,量子点等离子体的空间调制Quasiphase匹配,单体和量子点等离子体谐波产量的比较。该研究允许我们使用几个纳米大小的发射器确定相干的极端紫外线辐射产生的机制以及用于进一步提高高级谐波产生效率的最佳方法。通过AIP发布在许可证下发布。

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  • 来源
    《Journal of Applied Physics》 |2019年第19期|193103.1-193103.10|共10页
  • 作者单位

    Chinese Acad Sci Changchun Inst Opt Fine Mech & Phys State Key Lab Appl Opt Guo China US Photon Lab Changchun 130033 Jilin Peoples R China|Voronezh State Univ Fac Phys 1 Univ Sq Voronezh 394018 Russia|Amer Univ Sharjah Dept Phys POB 26666 Sharjah U Arab Emirates;

    Chinese Acad Sci Changchun Inst Opt Fine Mech & Phys State Key Lab Appl Opt Guo China US Photon Lab Changchun 130033 Jilin Peoples R China|Amer Univ Sharjah Dept Phys POB 26666 Sharjah U Arab Emirates;

    Chinese Acad Sci Changchun Inst Opt Fine Mech & Phys State Key Lab Appl Opt Guo China US Photon Lab Changchun 130033 Jilin Peoples R China|Amer Univ Sharjah Dept Phys POB 26666 Sharjah U Arab Emirates;

    Chinese Acad Sci Changchun Inst Opt Fine Mech & Phys State Key Lab Appl Opt Guo China US Photon Lab Changchun 130033 Jilin Peoples R China;

    Voronezh State Univ Fac Phys 1 Univ Sq Voronezh 394018 Russia;

    Voronezh State Univ Fac Phys 1 Univ Sq Voronezh 394018 Russia|Voronezh State Univ Engn Technol Sci & Educ Ctr NanoBioTech Voronezh 394017 Russia|Univ Munster Ctr Soft Nanosci D-48149 Munster Germany;

    Voronezh State Univ Fac Phys 1 Univ Sq Voronezh 394018 Russia|Univ Munster Ctr Soft Nanosci D-48149 Munster Germany;

    Chinese Acad Sci Changchun Inst Opt Fine Mech & Phys State Key Lab Appl Opt Guo China US Photon Lab Changchun 130033 Jilin Peoples R China|Univ Rochester Inst Opt Rochester NY 14627 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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