• Photonics Research
  • Vol. 5, Issue 4, 293 (2017)
Ekaterina I. Gacheva1, Anatoly K. Poteomkin1, Sergey Yu. Mironov1, Viktor V. Zelenogorskii1, Efim A. Khazanov1、2, Konstantin B. Yushkov2、*, Alexander I. Chizhikov2, and Vladimir Ya. Molchanov2
Author Affiliations
  • 1Institute of Applied Physics of the Russian Academy of Sciences (IAP RAS), 46 Ulyanov Street, Nizhny Novgorod 603950, Russia
  • 2National University of Science and Technology “MISIS,” 4 Leninsky Prospekt, Moscow 119049, Russia
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    DOI: 10.1364/PRJ.5.000293 Cite this Article Set citation alerts
    Ekaterina I. Gacheva, Anatoly K. Poteomkin, Sergey Yu. Mironov, Viktor V. Zelenogorskii, Efim A. Khazanov, Konstantin B. Yushkov, Alexander I. Chizhikov, Vladimir Ya. Molchanov. Fiber laser with random-access pulse train profiling for a photoinjector driver[J]. Photonics Research, 2017, 5(4): 293 Copy Citation Text show less
    References

    [1] E. J. Jaeschke, S. Khan, J. R. Schneider, J. B. Hastings. Synchrotron Light Sources and Free-Electron Lasers(2016).

    [2] V. Le Flanchec, J.-P. Blésès, S. Striby, J.-P. Laget. Stabilization system of a photoinjector drive laser. Appl. Opt., 36, 8541-8546(1997).

    [3] I. Will, A. Liero, D. Mertins, W. Sandner. Feedback-stabilized Nd:YLF amplifier system for generation of picosecond pulse trains of an exactly rectangular envelope. IEEE J. Quantum Electron., 34, 2020-2028(1998).

    [4] M. Petrarca, M. Martyanov, M. S. Divall, G. Luchinin. Study of the powerful Nd:YLF laser amplifiers for the CTF3 photoinjectors. IEEE J. Quantum Electron., 47, 306-313(2011).

    [5] I. Will, H. I. Templin, S. Schreiber, W. Sandner. Photoinjector drive laser of the FLASH FEL. Opt. Express, 19, 23770-23781(2011).

    [6] V. Y. Molchanov, S. I. Chizhikov, O. Y. Makarov, N. P. Solodovnikov, V. N. Ginzburg, E. V. Katin, E. A. Khazanov, V. V. Lozhkarev, I. V. Yakovlev. Adaptive acousto-optic technique for femtosecond laser pulse shaping. Appl. Opt., 48, C118-C124(2009).

    [7] V. Y. Molchanov, K. B. Yushkov. Advanced spectral processing of broadband light using acousto-optic devices with arbitrary transmission functions. Opt. Express, 22, 15668-15678(2014).

    [8] N. V. Didenko, A. V. Konyashchenko, P. V. Kostryukov, L. L. Losev, V. S. Pazyuk, S. Y. Tenyakov, V. Y. Molchanov, S. I. Chizhikov, K. B. Yushkov. 40-fs hydrogen Raman laser. Quantum Electron., 45, 1101-1104(2015).

    [9] S. I. Chizhikov, S. G. Garanin, L. V. Goryachev, V. Y. Molchanov, V. V. Romanov, N. N. Rukavishnikov, S. V. Sokolovskii, I. N. Voronich, K. B. Yushkov. Acousto-optical adaptive correction of chirped laser pulse spectral profile in Nd-phosphate glass regenerative amplifier. Laser Phys. Lett., 10, 015301(2013).

    [10] K. B. Yushkov, V. V. Romanov, G. S. Rogozhnikov, V. Y. Molchanov. 70  GHz arbitrary modulation of chirped laser pulses by means of acousto-optics. Opt. Lett., 41, 5442-5445(2016).

    [11] B. Borchers, S. Koke, A. Husakou, J. Herrmann, G. Steinmeyer. Carrier-envelope phase stabilization with sub-10 as residual timing jitter. Opt. Lett., 36, 4146-4148(2011).

    [12] O. de Vries, T. Saule, M. Plötner, F. Lücking, T. Eidam, A. Hoffmann, A. Klenke, S. Hädrich, J. Limpert, S. Holzberger, T. Schreiber, R. Eberhardt, I. Pupeza, A. Tünnermann. Acousto-optic pulse picking scheme with carrier-frequency-to-pulse-repetition-rate synchronization. Opt. Express, 23, 19586-19595(2015).

    [13] S. A. Andreev, N. P. Andreeva, M. S. Barashkov, V. V. Badikov, V. K. Demkin, A. K. Don, V. M. Epikhin, M. I. Krymskii, Y. K. Kalinnikov, K. V. Mitin, A. M. Seregin, V. V. Sinaiskii, M. A. Talalaev, A. A. Chistyakov, N. I. Shchebetova, T. A. Shchetinkina. Investigation into the ways of tuning parametric oscillators of visible and IR ranges. Quantum Electron., 40, 288-295(2010).

    [14] R. Royon, J. Lhermite, L. Sarger, E. Cormier. High power, continuous-wave ytterbium-doped fiber laser tunable from 976 to 1120  nm. Opt. Express, 21, 13818-13823(2013).

    [15] H. Chen, S.-P. Chen, Z.-F. Jiang, J. Hou. Diversified pulse generation from frequency shifted feedback Tm-doped fibre lasers. Sci. Rep., 6, 26431(2016).

    [16] D. O. Harris. Multichannel acousto-optic crossbar switch. Appl. Opt., 30, 4245-4256(1991).

    [17] J. Sapriel, D. Charissoux, V. B. Voloshinov, V. Y. Molchanov. Tunable acousto-optic filters and equalizers for WDM applications. J. Lightwave Technol., 20, 892-899(2002).

    [18] G. Aubin, J. Sapriel, V. Y. Molchanov, R. Gabet, P. Grosso, S. Gosselin, Y. Jaouen. Multichannel acousto-optic cells for fast optical crossconnect. Electron. Lett., 40, 448-449(2004).

    [19] S. Antonov, A. Vainer, V. Proklov, Y. Rezvov. Switch multiplexer of fiber-optic channels based on multibeam acousto-optic diffraction. Appl. Opt., 48, C171-C181(2009).

    [20] B.-J. Tseng, C.-W. Tarn. Real-time polarization mode dispersion monitoring system for a multiple-erbium-doped fiber amplifier, dense wavelength division multiplexing optical fiber transmission by amplified spontaneous emission modulation and acousto-optic tunable fiber scanning techniques. Appl. Opt., 48, C92-C97(2009).

    [21] A. I. Baranov, D. V. Myasnikov, D. V. Protasenya, A. S. Demkin, V. P. Gapontsev. High power ultrashort fiber laser system at 1.55  um. International Conference Laser Optics, S1-S6(2016).

    [22] A. Agnesi, L. Carrà, F. Pirzio, D. Scarpa, A. Tomaselli, G. Reali, C. Vacchi, C. Braggio. High-gain diode-pumped amplifier for generation of microjoule-level picosecond pulses. Opt. Express, 14, 9244-9249(2006).

    [23] J. Morgenweg, K. S. E. Eikema. Tailored pulse sequences from an 880  nm pumped Nd: YVO4 bounce amplifier. Opt. Lett., 37, 208-210(2012).

    [24] A. Agnesi, C. Braggio, L. Carrà, F. Pirzio, S. Lodo, G. Messineo, D. Scarpa, A. Tomaselli, G. Reali, C. Vacchi. Laser system generating 250-mJ bunches of 5-GHz repetition rate, 12-ps pulses. Opt. Express, 16, 15811-15815(2008).

    [25] A. K. Potemkin, E. I. Gacheva, V. V. Zelenogorskii, E. V. Katin, I. E. Kozhevatov, V. V. Lozhkarev, G. A. Luchinin, D. E. Silin, E. A. Khazanov, D. V. Trubnikov. Laser driver for a photocathode of an electron linear accelerator. Quantum Electron., 40, 1123-1130(2010).

    [26] A. Agnesi, L. Carrà, P. Dallocchio, F. Pirzio, G. Reali, S. Lodo, G. Piccinno. 50-mJ macro-pulses at 1064  nm from a diode-pumped picosecond laser system. Opt. Express, 19, 20316-20321(2011).

    [27] E. I. Gacheva, A. K. Poteomkin, E. A. Khazanov, V. V. Zelenogorskii, E. V. Katin, G. A. Luchinin, N. I. Balalykin, V. F. Minashkin, M. A. Nozdrin, G. V. Trubnikov, G. D. Shirkov. Laser driver for a photoinjector of an electron linear accelerator. IEEE J. Quantum Electron., 50, 522-529(2014).

    [28] S. Y. Mironov, A. K. Poteomkin, E. I. Gacheva, A. V. Andrianov, V. V. Zelenogorskii, R. Vasiliev, V. Smirnov, M. Krasilnikov, F. Stephan, E. A. Khazanov. Generation of 3D ellipsoidal laser beams by means of a profiled volume chirped Bragg grating. Laser Phys. Lett., 13, 055003(2016).

    [29] E. I. Gacheva, V. V. Zelenogorskii, A. V. Andrianov, M. Krasilnikov, M. A. Martyanov, S. Y. Mironov, A. K. Poteomkin, E. M. Syresin, F. Stephan, E. A. Khazanov. Disk Yb:KGW amplifier of profiled pulses of laser driver for electron photoinjector. Opt. Express, 23, 9627-9639(2015).

    [30] L. N. Magdich, V. Y. Molchanov. Nonreciprocal phenomena in acousto-optical modulators. Sov. Tech. Phys., 47, 1068-1069(1977).

    [31] L. N. Magdich, V. Y. Molchanov. Theory of acoustooptical interaction in a high-field. Opt. Spectrosc., 48, 159-161(1980).

    [32] K. B. Yushkov, V. Y. Molchanov. Theory of acousto-optical Bragg diffraction of ultrashort laser pulses in dispersive crystals. Electron. Lett., 48, 174-175(2012).

    Ekaterina I. Gacheva, Anatoly K. Poteomkin, Sergey Yu. Mironov, Viktor V. Zelenogorskii, Efim A. Khazanov, Konstantin B. Yushkov, Alexander I. Chizhikov, Vladimir Ya. Molchanov. Fiber laser with random-access pulse train profiling for a photoinjector driver[J]. Photonics Research, 2017, 5(4): 293
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