RESEARCH ARTICLE

Monolithic tapered Yb-doped fiber chirped pulse amplifier delivering 126 μJ and 207 MW femtosecond laser with near diffraction-limited beam quality

  • Tao Wang 1 ,
  • Bo Ren 1 ,
  • Can Li , 1 ,
  • Kun Guo 1 ,
  • Jinyong Leng 1,2,3 ,
  • Pu Zhou , 1
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  • 1. College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
  • 2. Nanhu Laser Laboratory, National University of Defense Technology, Changsha 410073, China
  • 3. Hunan Provincial Key Laboratory of High Energy Laser Technology, National University of Defense Technology, Changsha 410073, China
lc0616@163.com
zhoupu203@163.com

Received date: 06 Aug 2023

Accepted date: 06 Oct 2023

Published date: 15 Sep 2023

Copyright

2023 The Author(s) 2023

Abstract

In this work, a high-energy and high peak power chirped pulse amplification system with near diffraction-limited beam quality based on tapered confined-doped fiber (TCF) is experimentally demonstrated. The TCF has a core numerical aperture of 0.07 with core/cladding diameter of 35/250 μm at the thin end and 56/400 μm at the thick end. With a backward-pumping configuration, a maximum single pulse energy of 177.9 μJ at a repetition rate of 504 kHz is realized, corresponding to an average power of 89.7 W. Through partially compensating for the accumulated nonlinear phase during the amplification process via adjusting the high order dispersion of the stretching chirped fiber Bragg grating, the duration of the amplified pulse is compressed to 401 fs with a pulse energy of 126.3 μJ and a peak power of 207 MW, which to the best of our knowledge represents the highest peak power ever reported from a monolithic ultrafast fiber laser. At the highest energy, the polarization extinction ratio and the M2 factor were respectively measured to be ∼ 19 dB and 1.20. In addition, the corresponding intensity noise properties as well as the short- and long-term stability were also examined, verifying a stable operation of the system. It is believed that the demonstrated laser source could find important applications in, for example, advanced manufacturing and photomedicine.

Cite this article

Tao Wang , Bo Ren , Can Li , Kun Guo , Jinyong Leng , Pu Zhou . Monolithic tapered Yb-doped fiber chirped pulse amplifier delivering 126 μJ and 207 MW femtosecond laser with near diffraction-limited beam quality[J]. Frontiers of Optoelectronics, 2023 , 16(3) : 30 . DOI: 10.1007/s12200-023-00087-y

1
Hädrich, S., Klenke, A., Rothhardt, J., Krebs, M., Hoffmann, A., Pronin, O., Pervak, V., Limpert, J., Tünnermann, A.: High photon flux table-top coherent extreme-ultraviolet source. Nat. Photonics 8(10), 779–783 (2014)

DOI

2
Malinauskas, M., Žukauskas, A., Hasegawa, S., Hayasaki, Y., Mizeikis, V., Buividas, R., Juodkazis, S.: Ultrafast laser processing of materials: from science to industry. Light Sci. Appl. 5(8), e16133 (2016)

DOI

3
Kerse, C., Kalaycıoğlu, H., Elahi, P., Çetin, B., Kesim, D.K., Akçaalan, Ö., Yavaş, S., Aşık, M.D., Öktem, B., Hoogland, H., Holzwarth, R., Ilday, F.Ö.: Ablation-cooled material removal with ultrafast bursts of pulses. Nature 537(7618), 84–88 (2016)

DOI

4
Chang, Z., Fang, L., Fedorov, V., Geiger, C., Ghimire, S., Heide, C., Ishii, N., Itatani, J., Joshi, C., Kobayashi, Y., Kumar, P., Marra, A., Mirov, S., Petrushina, I., Polyanskiy, M., Reis, D.A., Tochitsky, S., Vasilyev, S., Wang, L., Wu, Y., Zhou, F.: Intense infrared lasers for strong-field science. Adv. Opt. Photonics 14(4), 652–782 (2022)

DOI

5
Wang, Y., Chi, H., Baumgarten, C., Dehne, K., Meadows, A.R., Davenport, A., Murray, G., Reagan, B.A., Menoni, C.S., Rocca, J.J.: 1.1 J Yb:YAG picosecond laser at 1 kHz repetition rate. Opt. Lett. 45(24), 6615–6618 (2020)

DOI

6
Wang, W., Wu, H., Liu, C., Sun, B., Liang, H.: Multigigawatt 50 fs Yb:CALGO regenerative amplifier system with 11 W average power and mid-infrared generation. Photon. Res. 9(8), 1439–1445 (2021)

DOI

7
Zervas, M.N., Codemard, C.A.: High power fiber lasers: a review. IEEE J. Sel. Top. Quantum Electron. 20(5), 219–241 (2014)

DOI

8
Zhou, J., Pan, W., Qi, W., Cao, X., Cheng, Z., Feng, Y.: Ultrafast Raman fiber laser: a review and prospect. PhotoniX. 3(1), 18 (2022)

DOI

9
Chang, G., Wei, Z.: Ultrafast fiber lasers: an expanding versatile toolbox. iScience. 23(5), 101101 (2020)

DOI

10
Zuo, J., Lin, X.: High-power laser systems. Laser Photonics Rev. 16(5), 2100741 (2022)

DOI

11
Wang, B., Peng, Z., Cheng, Z., Xu, Y.A.N., Wang, P.: High-power 0.4-mJ picosecond CPA system based on an extra-large-modearea triple-clad fiber. Opt. Express 30(23), 41171–41180 (2022)

DOI

12
Zhang, Y., Wang, J., Teng, H., Fang, S., Wang, J., Chang, G., Wei, Z.: Double-pass pre-chirp managed amplification with high gain and high average power. Opt. Lett. 46(13), 3115–3118 (2021)

DOI

13
Shestaev, E., Hoff, D., Sayler, A.M., Klenke, A., Hädrich, S., Just, F., Eidam, T., Jójárt, P., Várallyay, Z., Osvay, K., Paulus, G.G., Tünnermann, A., Limpert, J.: High-power ytterbium-doped fiber laser delivering few-cycle, carrier-envelope phase-stable 100 μJ pulses at 100 kHz. Opt. Lett. 45(1), 97–100 (2020)

DOI

14
Wang, T., Li, C., Ren, B., Guo, K., Wu, J., Leng, J., Zhou, P.: High-power femtosecond laser generation from an all-fiber linearly polarized chirped pulse amplifier. High Power Laser Sci. Eng. 11, e25 (2023)

DOI

15
Limpert, J., Liem, A., Reich, M., Schreiber, T., Nolte, S., Zellmer, H., Tünnermann, A., Broeng, J., Petersson, A., Jakobsen, C.: Low-nonlinearity single-transverse-mode ytterbium-doped photonic crystal fiber amplifier. Opt. Express 12, 1313–1319 (2004)

DOI

16
Habib, M.S., Antonio-Lopez, J.E., Markos, C., Schülzgen, A., Amezcua-Correa, R.: Single-mode, low loss hollow-core antiresonant fiber designs. Opt. Express 27(4), 3824–3836 (2019)

DOI

17
Limpert, J., Stutzki, F., Jansen, F., Otto, H.J., Eidam, T., Jauregui, C., Tünnermann, A.: Yb-doped large-pitch fibres: effective singlemode operation based on higher-order mode delocalisation. Light Sci. Appl. 1(4), e8 (2012)

DOI

18
Steinkopff, A., Jauregui, C., Stutzki, F., Nold, J., Hupel, C., Haarlammert, N., Bierlich, J., Tünnermann, A., Limpert, J.: Transverse single-mode operation in a passive large pitch fiber with more than 200 μm mode-field diameter. Opt. Lett. 44(3), 650–653 (2019)

DOI

19
Ma, X., Zhu, C., Hu, I.N., Kaplan, A., Galvanauskas, A.: Single-mode chirally-coupled-core fibers with larger than 50μm diameter cores. Opt. Express 22(8), 9206–9219 (2014)

DOI

20
Želudevičius, J., Danilevičius, R., Viskontas, K., Rusteika, N., Regelskis, K.: Femtosecond fiber CPA system based on picosecond master oscillator and power amplifier with CCC fiber. Opt. Express 21(5), 5338–5345 (2013)

DOI

21
Eidam, T., Rothhardt, J., Stutzki, F., Jansen, F., Hädrich, S., Carstens, H., Jauregui, C., Limpert, J., Tünnermann, A.: Fiber chirped-pulse amplification system emitting 3.8 GW peak power. Opt. Express 19(1), 255–260 (2011)

DOI

22
Filippov, V., Chamorovskii, Y., Kerttula, J., Golant, K., Pessa, M., Okhotnikov, O.G.: Double clad tapered fiber for high power applications. Opt. Express 16(3), 1929–1944 (2008)

DOI

23
Kerttula, J., Filippov, V., Chamorovskii, Y., Ustimchik, V., Golant, K., Okhotnikov, O.G.: Principles and performance of tapered fiber lasers: from uniform to flared geometry. Appl. Opt. 51(29), 7025–7038 (2012)

DOI

24
Huang, L., Ma, P., Su, R., Lai, W., Ma, Y., Zhou, P.: Comprehensive investigation on the power scaling of a tapered Yb-doped fiber-based monolithic linearly polarized high-peak-power near-transform- limited nanosecond fiber laser. Opt. Express 29(2), 761–782 (2021)

DOI

25
Ren, B., Li, C., Wang, T., Guo, K., Wu, J., Su, R., Ma, P., Zhou, P.: Generation of ultrafast laser with 11 MW peak power from a gain-managed nonlinear tapered fiber amplifier. Opt. Laser Technol. 160, 109081 (2023)

DOI

26
Chen, X., Yao, T., Huang, L., An, Y., Wu, H., Pan, Z., Zhou, P.: Functional fibers and functional fiber-based components for high-power lasers. Adv. Fiber Mater. 5(1), 59–106 (2023)

DOI

27
Lai, W., Ma, P., Liu, W., Huang, L., Li, C., Ma, Y., Zhou, P.: 550 W single frequency fiber amplifiers emitting at 1030 nm based on a tapered Yb-doped fiber. Opt. Express 28(14), 20908–20919 (2020)

DOI

28
Huang, L., Lai, W., Ma, P., Wang, J., Su, R., Ma, Y., Li, C., Zhi, D., Zhou, P.: Tapered Yb-doped fiber enabled monolithic high-power linearly polarized single-frequency laser. Opt. Lett. 45(14), 4001–4004 (2020)

DOI

29
Ustimchik, V., Chamorovskii, Y., Filippov, V.: High average power (500 W/50 ps) and high peak power (3.2 MW/50 ps) picosecond pulsed MOPA system with tapered double-clad ytterbium fiber. SPIE LASE (SPIE). 11981 (2022)

DOI

30
Leich, M., Kalide, A., Eschrich, T., Lorenz, M., Lorenz, A., Wondraczek, K., Schönfeld, D., Langner, A., Schötz, G., Jäger, M.: 2 MW peak power generation in fluorine co-doped Yb fiber prepared by powder-sinter technology. Opt. Lett. 45(16), 4404–4407 (2020)

DOI

31
Bobkov, K., Levchenko, A., Kashaykina, T., Aleshkina, S., Bubnov, M., Lipatov, D., Laptev, A., Guryanov, A., Leventoux, Y., Granger, G., Couderc, V., Février, S., Likhachev, M.: Scaling of average power in sub-MW peak power Yb-doped tapered fiber picosecond pulse amplifiers. Opt. Express 29(2), 1722–1735 (2021)

DOI

32
Petrov, A., Odnoblyudov, M., Gumenyuk, R., Minyonok, L., Chumachenko, A., Filippov, V.: Picosecond Yb-doped tapered fiber laser system with 1.26 MW peak power and 200 W average output power. Sci. Rep. 10(1), 17781 (2020)

DOI

33
Li, W., Ma, P., Lai, W., Song, J., Wang, T., Ren, B., Liu, W., Zhou, P., Si, L.: Tapered active fiber simultaneously enabled 141 W high average and 1.3 MW high peak power via all-fiber and polarization-maintained picosecond amplifier. Opt. Laser Technol. 152, 108166 (2022)

DOI

34
Roy, V., Grenier, P., Desbiens, L., Deshaies, S., Deladurantaye, M., Paradis, P., Boivin, M., Labranche, B., Proulx, A., Taillon, Y.: High-power/energy large mode area tapered fiber amplifiers. In: Proceedings of SPIE, 1166509 (2021)

DOI

35
Koptev, M.Y., Anashkina, E.A., Bobkov, K.K., Likhachev, M.E., Levchenko, A.E., Aleshkina, S.S., Semjonov, S.L., Denisov, A.N., Bubnov, M.M., Lipatov, D.S., Laptev, A.Y., Gur’yanov, A.N., Andrianov, A.V., Muravyev, S.V., Kim, A.V.: Fibre amplifier based on an ytterbium-doped active tapered fibre for the generation of megawatt peak power ultrashort optical pulses. Quantum Electron. 45(5), 443–450 (2015)

DOI

36
Bobkov, K., Andrianov, A., Koptev, M., Muravyev, S., Levchenko, A., Velmiskin, V., Aleshkina, S., Semjonov, S., Lipatov, D., Guryanov, A., Kim, A., Likhachev, M.: Sub-MW peak power diffraction-limited chirped-pulse monolithic Yb-doped tapered fiber amplifier. Opt. Express 25(22), 26958–26972 (2017)

DOI

37
Guesmi, K., Mugnier, A., Canat, G., Canal, C., Maine, P.: Simple design for high energy femtosecond tapered double clad fiber amplifier. In: Proceedings of SPIE, 1166517(2021)

DOI

38
Cao, X., Li, Q., Li, F., Zhao, H., Zhao, W., Wang, Y., Li, D., Yang, Y., Wen, W., Si, J.: Femtosecond Yb-doped tapered fiber pulse amplifiers with peak power of over hundred megawatts. Opt. Express 31(4), 5507–5518 (2023)

DOI

39
Gouhier, B., Dixneuf, C., Hilico, A., Guiraud, G., Traynor, N., Santarelli, G.: Low intensity noise high-power tunable fiber-based laser around 1007 nm. J. Lightwave Technol. 37(14), 3539–3543 (2019)

DOI

40
Tao, Y., Jiang, M., Liu, L., Li, C., Zhou, P., Jiang, Z.: Over 250 W low noise core-pumped single-frequency all-fiber amplifier. Opt. Express 31(6), 10586–10595 (2023)

DOI

41
Nguyen, D., Piracha, M.U., Delfyett, P.J.: Transform-limited pulses for chirped-pulse amplification systems utilizing an active feedback pulse shaping technique enabling five time increase in peak power. Opt. Lett. 37(23), 4913–4915 (2012)

DOI

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