Laser & Optoelectronics Progress, Volume. 50, Issue 8, 80001(2013)

Seeded High-Gain Free-Electron Lasers

Zhao Zhentang* and Wang Dong
Author Affiliations
  • [in Chinese]
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    References(58)

    [1] [1] J Madey/Stimulated emission of Bremsstrahlung in a periodic magnetic field[J]. J Appl Phys, 1971, 42(5): 1906-1913.

    [2] [2] D A G Deacon, L R Elias, J M J Madey, et al.. First operation of a free-electron laser[J]. Phys Rev Lett, 1997, 38(16): 892-894.

    [3] [3] A M Kondratenko, E L Saldin. Generation of coherent radiation by a relativistic electron beam in an ondulator[J]. Part Accel, 1980, 10: 207-216.

    [4] [4] R Bonifacio, C Pellegrini, L Narducci. Collective instabilities and high-gain regime in a free electron laser[J]. Opt Commun, 1984, 50(6): 373-378.

    [5] [5] T J Orzechowski, B Anderson, W M Fawley, et al.. Microwave radiation from a high-gain free electron laser amplifier[J]. Phys Rev Lett, 1985, 54(9): 889-892.

    [6] [6] M Hogan, C. Pellegrini, J. Rosenzweig, et al.. Measurement of high gain and intensity fluctuations in a self-amplified, spontaneous-emission free-electron laser[J]. Phys Rev Lett, 1998, 80(2): 289-292.

    [7] [7] Milton S V, Gluskin E, Arnold N D, et al.. Exponential gain and saturation of a self-amplified spontaneous emission free-electron laser[J]. Science, 2001, 292(5524): 2037-2041.

    [8] [8] V Ayvazyan, N Baboi, I Bohnet, et al.. A new powerful source for coherent VUV radiation: demonstration of exponential growth and saturation at the TTF free-electron laser[J]. Eur Phys J D, 2002, 20(1): 149-156.

    [9] [9] W Ackermann, G Asova, V Ayvazyan, et al.. Operation of a free-electron laser from the extreme ultraviolet to the water window[J]. Nature Photonics, 2007, 1(6): 336-342.

    [10] [10] S Schreiber, B Faatz, K Honkavaara. Operation of FLASH at 6.5 nm wavelength[C]. Proceedings of the 2008 European Particle Accelerator Conference, 2008. 133-135.

    [11] [11] P Emma, R Akre, J Arthur, et al.. First lasing and operation of nngstrm-wavelength free-electron laser[J]. Nature Photonics, 2010, 4(9): 641-647.

    [12] [12] S Schreiber. First Lasing in the Water Window with 4.1 nm at FLASH[C]. Proceedings of FEL2011, 2011. 164-165.

    [13] [13] T Ishikawa, H Aoyagi, T Asaka, et al.. A compact X-ray free-electron laser emitting in the sub-ngstrm region[J]. Nature Photonics, 2012, 6(8): 540-544.

    [14] [14] L H Yu. Generation of intense UV radiation by subharmonically seeded single-pass free-electron lasers[J]. Phys Rev A, 1991, 44(8): 5178-5193.

    [15] [15] L H Yu, M Babzien, I Ben-Zvi, et al.. High-gain harmonic-generation free-electron laser[J]. Science, 2000, 289(5481): 932-934.

    [16] [16] J Feldhausa, E L Saldinb, J R Schneidera, et al.. Possible application of X-ray optical elements for reducing the spectral bandwidth of an X-ray SASE FEL[J]. Opt Commun, 1997, 140(4-6): 341-352.

    [17] [17] L H Yu, J Wu. Theory of high gain harmonic generation: an analytical estimate[J]. Nucl Instrum Methods Phys Res, 2002, 483(1-2): 493-498.

    [18] [18] S Reiche. Overview of seeding methods for FELs[C]. Proceedings of IPAC 2013, 2013. 2063-2067.

    [19] [19] R Bonifacio, C Pellegrini, L M Narducci. Collective instability of a free electron laser including space charge and harmonics[J]. Opt Commun, 1985, 53(3): 197-202.

    [20] [20] Z T Zhao, S Chen, L H Yu, et al.. Shanghai soft X-ray free electron laser test facility[C]. Proceedings of IPAC2011, 2011. 3011-3013.

    [21] [21] G Lambert, B Carré, M E Couprie, et al.. Seeding high gain harmonic generation with laser harmonics produced in gases[C]. Proceedings of FEL2004, 2004. 155-158.

    [22] [22] G Lambert, T Hara, D Garzella, et al.. Injection of harmonics generated in gas in a free-electron laser providing intense and coherent extreme-ultraviolet light[J]. Nature Phys, 2008, 4(4): 296-300.

    [23] [23] T Togashi, K Fukami, S Matsubara, et al.. First observation of the 61.5 nm seeded FEL at the SCSS test accelerator[C]. Proceedings of the 2010 FEL Conference, 2010. 13.

    [24] [24] S Ackermann, A Azima, J Bodewadt, et al.. sFLASH: present status and commissioning results[C]. Proceedings of IPAC2011, 2011. 924-927.

    [25] [25] Geloni G, Kocharyan V, Saldin E. A novel self-seeding scheme for hard X-ray FELs[J]. J Mod Opt, 2011, 58(16): 1391-1403.

    [26] [26] J Amann, W Berg, V Blank, et al.. Demonstration of self-seeding in a hard-X-ray free-electron laser[J]. Nature Photonics, 2012, 6(10): 693-698.

    [27] [27] Y Feng, J B Hastings, J Krzywinski, et al.. Proceedings of FEL2010, 2010. 270-273.

    [28] [28] R Bonifacio, L De Salvo Souza, P Pierini. Generation of XUV light by resonant frequency tripling in a two-wiggler FEL amplifier[J]. Nucl Instrum Methods Phys Res A, 1990, 296(1-3): 787-790.

    [29] [29] L H Yu, L DiMauro, A Doyuran, et al.. First ultraviolet high-gain harmonic-generation free-electron laser[J]. Phys Rev Lett, 2003, 91(7): 074801.

    [30] [30] A Doyuran, Louis DiMauro,William Graves, et al.. Experimental study of a high-gain harmonic-generation free-electron laser in the ultraviolet[J]. Phys Rev ST Accel Beams, 2004, 7(7): 050701.

    [31] [31] Z T Zhao. Seeding experiments at the SDUV-FEL[C]. Proceedings of FEL2011, WEOBI2 (invited talk), 2011.

    [32] [32] E Allaria, R Appio, L Badano, et al.. Highly coherent and stable pulses from the FERMI seeded free-electron laser in the extreme ultraviolet[J]. Nature Photonics, 2012, 6(10): 699-704.

    [33] [33] B Liu, W B Li, J H Chen, et al.. Demonstration of a widely-tunable and fully-coherent high-gain harmonic-generation free-electron laser[J]. Phys Rev ST Accel Beams, 2013, 16(2): 020704.

    [34] [34] E Allaria, A Battistoni, F Bencivenga, et al.. Tunability experiments at the FERMI@Elettra free-electron laser[J]. New J Phys, 2012, 14(11): 113009.

    [35] [35] Li Hua Yu, I Ben-Zvi. High-gain harmonic generation of soft X-rays with the “fresh bunch” technique[J]. Nucl Instrum Methods Phys Res A, 1997, 393(1-3): 96-99.

    [36] [36] Juhao Wu, Li Hua Yu. Coherent hard X-ray production by cascading stages of high gain harmonic generation[J]. Nucl Instrum Methods Phys Res A, 2001, 475:104-111.

    [37] [37] S Di Mitri, E Allaria, D Castronovo, et al.. Double Stage Seeded FEL with Fresh Bunch Injection Technique at FERMI@Elettra[C]. Proceedings of IPAC 2013, 2013. TUPEA011.

    [38] [38] L Giannessi. FERMI demonstrates first seeded free electron laser working in double-stage cascaded configuration[J]. Synchrotron Radiation News, 2013, 26(1): 48.

    [39] [39] E L Saldin, E A Schneidmiller, M V Yurkov. Study of a noise degradation of amplification process in a multistage HGHG FEL[J]. Opt Commun, 2002, 202(1-3): 169-187.

    [40] [40] G Geloni, V Kocharyan, E Saldin. Analytical Studies of Constraints on the Performance for EEHG FEL Seed Lasers[OL]. arXiv:1111.1615v1[physics.acc-ph],http:∥arXiv.org/abs/111.1615.

    [41] [41] D Ratner, A Fry, G Stupakov, et al.. Laser phase errors in seeded free electron lasers[J]. Phys Rev ST Accel Beams, 2012, 15(3): 030702.

    [42] [42] C Feng, H X Deng, G L Wang, et al.. Slippage effect on energy modulation in seeded free-electron lasers with frequency chirped seed laser pulses[J]. Phys Rev ST Accel Beams, 2013, 16(6): 060705.

    [43] [43] G Stupakov. Using the beam-echo effect for generation of short-wavelength radiation[J]. Phys Rev Lett, 2009, 102(7): 074801.

    [44] [44] D Xiang, G Stupakov. Echo-enabled harmonic generation free electron laser[J]. Phys Rev ST Accel Beams, 2009, 12(3): 030702.

    [45] [45] D Xiang, E Colby, M Dunning, et al.. Demonstration of the echo-enabled harmonic generation technique for short-wavelength seeded free electron lasers[J]. Phys Rev Lett, 2010, 105(11): 114801.

    [46] [46] D Xiang, E Colby, M Dunning, et al.. Evidence of high harmonics from echo-enabled harmonic generation for seeding X-ray free electron lasers[J]. Phys Rev Lett, 2012, 108(2): 024802.

    [47] [47] Z T Zhao, D Wang, J H Chen, et al.. First lasing of an echo-enabled harmonic generation free-electron laser[J]. Nature Photonics, 2012, 6(6): 360-363.

    [48] [48] T Zhang, D Wang, Z T Zhao, et al.. Design of a wavelength continuously tunable ultraviolet coherent light source[C]. Proceedings of IPAC2012, 2012. 1727-1728.

    [49] [49] J N Corlett, B Austin, K M Baptiste, et al.. A next generation light source facility at LBNL[C]. Proceedings of PAC2011, 2011. 775-777.

    [50] [50] A Azima, J Bdewadt, F. Curbis, et al.. Status of sFLASH, the seeding experiment at FLASH[C]. Proceedings of IPAC2010, 2010. 2161-2163.

    [51] [51] Kirsten Hacker, Robert Molo, Shaukat Khan, et al.. Progress towards HGHG and EEHG seeding at FLASH[C]. Proceedings of FEL2012, 2012. 257-260.

    [52] [52] M Altarelli, R Brinkmann, M Chergui, et al.. The European X-Ray Free-Electron Laser Technical Design Report[R]. DESY, 2007.

    [53] [53] R Ganter, R Abela, H H Braun, et al.. SwissFEL Conceptual Design Report[R]. PSI, PSI Bericht Nr. 10-04, 2010.

    [54] [54] H S Kang, S H Nam. X-ray free electron laser project of Pohang accelerator laboratory[C]. Proceedings of FEL2010, 2010. 155-158.

    [55] [55] A A Zholents, W M Fawley. Proposal for intense attosecond radiation from an X-ray free-electron laser[J]. Phys Rev Lett, 2004, 92(22): 224801.

    [56] [56] D Xiang, Z Huang, G Stupakov. Generation of intense attosecond X-ray pulses using ultraviolet laser induced microbunching in electron beams[J]. Phys Rev ST Accel Beams, 2009, 12(6): 060701.

    [57] [57] Deng Haixiao, Dai Zhimin. Ultra-high order harmonic generation via a free electron laser mechanism[J]. Chin Phys C, 2010, 34(8): 1140-1147.

    [58] [58] C Feng, J H Chen, Z T Zhao. Generating stable attosecond X-ray pulse trains with a mode-locked seeded free-electron laser[J]. Phys Rev ST Accel Beams 2012, 15(8): 080703.

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    Zhao Zhentang, Wang Dong. Seeded High-Gain Free-Electron Lasers[J]. Laser & Optoelectronics Progress, 2013, 50(8): 80001

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    Paper Information

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    Received: Jul. 22, 2013

    Accepted: --

    Published Online: Aug. 8, 2013

    The Author Email: Zhentang Zhao (zhaozt@sinap.ac.cn)

    DOI:10.3788/lop50.080001

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