Isolated attosecond X-ray pulses from superradiant thomson scattering by a relativistic chirped electron mirror

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作者
B. H. Schaap
P. W. Smorenburg
O. J. Luiten
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[1] University of Technology Eindhoven,Department of Applied Physics
[2] ASML Netherlands B.V.,undefined
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Scientific Reports | / 12卷
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Time-resolved investigation of electron dynamics relies on the generation of isolated attosecond pulses in the (soft) X-ray regime. Thomson scattering is a source of high energy radiation of increasing prevalence in modern labs, complementing large scale facilities like undulators and X-ray free electron lasers. We propose a scheme to generate isolated attosecond X-ray pulses based on Thomson scattering by colliding microbunched electrons on a chirped laser pulse. The electrons collectively act as a relativistic chirped mirror, which superradiantly reflects the laser pulse into a single localized beat. As such, this technique extends chirped pulse compression, developed for radar and applied in optics, to the X-ray regime. In this paper we theoretically show that, by using this approach, attosecond soft X-ray pulses with GW peak power can be generated from pC electron bunches at tens of MeV electron beam energy. While we propose the generation of few cycle X-ray pulses on a table-top system, the theory is universally scalable over the electromagnetic spectrum.
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[1]  
Paul PM(2001)Observation of a train of attosecond pulses from high harmonic generation Science 292 1689-1692
[2]  
Goulielmakis E(2010)Real-time observation of valence electron motion Nature 466 739-743
[3]  
Villeneuve DM(2017)Coherent imaging of an attosecond electron wave packet Science 356 1150-1153
[4]  
Hockett P(2010)Attosecond imaging of molecular electronic wavepackets Nat. Phys. 6 200-206
[5]  
Vrakking MJJ(2012)The multielectron ionization dynamics underlying attosecond strong-field spectroscopies Science 335 1336-1340
[6]  
Niikura H(2015)Measurement and laser control of attosecond charge migration in ionized iodoacetylene Science 350 790-795
[7]  
Haessler S(2009)Wavelength scaling of high harmonic generation efficiency Phys. Rev. Lett. 103 655-6
[8]  
Boguslavskiy AE(2011)High-energy attosecond light sources Nat. Photonics 5 1-391
[9]  
Kraus PM(2013)Few-cycle pulse generation in an x-ray free-electron laser Phys. Rev. Lett. 110 386-36
[10]  
Shiner A(2014)Proposal for carrier-envelope-phase stable single-cycle attosecond pulse generation in the extreme-ultraviolet range Phys. Rev. Lett. 113 30-217