Acta Photonica Sinica, Volume. 52, Issue 6, 0614002(2023)

Theoretical Study of Near Single-cycle Post Compression for Yb Dopped Lasers

Qi CHENG1,2, Hao YUAN1,2, Huabao CAO1、*, and Yuxi FU1、**
Author Affiliations
  • 1Center for Attosecond Science and Technology, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi'an 710119, China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
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    References(22)

    [1] MIDORIKAWA K. Progress on table-top isolated attosecond light sources[J]. Nature Photonics, 16, 267-278(2022).

    [2] SCHMIDT-BÖCKING H, ULLRICH J, DÖRNER R et al. The COLTRIMS reaction microscope-the spyhole into the ultrafast entangled dynamics of atomic and molecular systems[J]. Annalen der Physik, 533, 210034(2021).

    [3] SIE E J, ROHWER T, LEE C et al. Time-resolved XUV ARPES with tunable 24-33 eV laser pulses at 30 meV resolution[J]. Nature Communications, 10, 3535(2019).

    [4] ZHAO Z L, JI B Y, WANG L et al. Two-color laser PEEM imaging of horizontal and vertical components of femtosecond surface plasmon polaritons[J]. Chinese Physics B, 31, 10(2022).

    [5] BRAUCH U, RÖCKER C, GRAF T et al. High-power, high-brightness solid-state laser architectures and their characteristics[J]. Applied Physics B, 128, 58(2022).

    [6] SHINER A D, TRALLERO-HERRERO C, KAJUMBA N et al. Wavelength scaling of high harmonic generation efficiency[J]. Physical Review Letters, 103, 073902(2009).

    [7] HARITON V, WAHID A B, FIGUEIRA G et al. Multipass spectral broadening and compression in the green spectral range[J]. Optics Letters, 47, 1246-1249(2022).

    [8] WANG S Y, YAN J Y, BRUNNER W et al. High performance compression of 515 nm laser pulses at kHz-MHz repetition rates for ultrabright EUV high harmonic generation[C], HTh3B.4(2022).

    [9] KRETSCHMAR M, BRÉE C, NAGY T et al. Direct observation of pulse dynamics and self-compression along a femtosecond filament[J]. Optics Express, 22, 22905-22916(2014).

    [10] ANDERSON A, LÜCKING F, PRIKOSZOVITS T et al. Multi-mJ carrier envelope phase stabilized few-cycle pulses generated by a tabletop laser system[J]. Applied Physics B, 103, 531-536(2011).

    [11] WANG P F, LI Y Y, LI W K et al. 2.6 mJ/100 Hz CEP-stable near-single-cycle 4 μm laser based on OPCPA and hollow-core fiber compression[J]. Optics Letters, 43, 2197-2200(2018).

    [12] DESCAMPS D, GUICHARD F, PETIT S et al. High-power sub-15 fs nonlinear pulse compression at 515 nm of an ultrafast Yb-doped fiber amplifier[J]. Optics Letters, 46, 1804-1807(2021).

    [13] DUDLEY J M, TAYLOR J R[M]. Supercontinuum generation in optical fibers(2010).

    [14] GUO X Y, TOKITA S, YOSHII K et al. Generation of 300 nm bandwidth 0.5 mJ pulses near 1 μm in a single stage gas filled hollow core fiber[J]. Optics Express, 25, 21171-21179(2017).

    [15] BÖHLE F, KRETSCHMAR M, JULLIEN A et al. Compression of CEP-stable multi-mJ laser pulses down to 4 fs in long hollow fibers[J]. Laser Physics Letters, 11, 095401(2014).

    [16] DUTIN C F, DUBROUIL A, PETIT S et al. Post-compression of high-energy femtosecond pulses using gas ionization[J]. Optics Letters, 35, 253-255(2010).

    [17] BREE C, DEMIRCAN A, STEINMEYER G. Method for computing the nonlinear refractive index via Keldysh theory[J]. IEEE Journal of Quantum Electronics, 46, 433-437(2009).

    [18] NAGAR G C, SHIM B. Study of wavelength-dependent pulse self-compression for high intensity pulse propagation in gas-filled capillaries[J]. Optics Express, 29, 27416-27433(2021).

    [19] HÄDRICH S, ROTHHARDT J, EIDAM T et al. High energy ultrashort pulses via hollow fiber compression of a fiber chirped pulse amplification system[J]. Optics Express, 17, 3913-3922(2009).

    [20] AGRAWAL G P[M]. Nonlinear fiber optics, 5th ed(2013).

    [21] HAESSLER S, OUILLÉ M, KAUR J et al. High-harmonic generation and correlated electron emission from relativistic plasma mirrors at 1 kHz repetition rate[J]. Ultrafast Science, 9893418(2022).

    [22] NURHUDA M, SUDA A, KAKU M et al. Optimization of hollow fiber pulse compression using pressure gradients[J]. Applied Physics B, 89, 209-215(2007).

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    Qi CHENG, Hao YUAN, Huabao CAO, Yuxi FU. Theoretical Study of Near Single-cycle Post Compression for Yb Dopped Lasers[J]. Acta Photonica Sinica, 2023, 52(6): 0614002

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    Paper Information

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    Received: Mar. 1, 2023

    Accepted: Mar. 28, 2023

    Published Online: Jul. 27, 2023

    The Author Email: Huabao CAO (caohuabao@opt.ac.cn), Yuxi FU (fuyuxi@opt.ac.cn)

    DOI:10.3788/gzxb20235206.0614002

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