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      Application of a modified chirp-taper scheme for generation of attosecond pulses in XUV and soft X-ray FELs

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          Abstract

          Typically, in Self-Amplified Spontaneous Emission Free Electron Laser (SASE FEL) based short-pulse schemes, pulse duration is limited by FEL coherence time. For hard X-ray FELs, coherence time is in a few hundred attosecond range while for XUV and soft X-ray FELs it is in the femtosecond regime. In this paper the modification of so-called chirp-taper scheme is developed that allows to overcome the coherence time barrier. Numerical simulations for XUV and soft X-ray FEL user facility FLASH demonstrate that one can generate a few hundred attosecond long pulses in the wavelength range 2 - 10 nm with peak power reaching hundreds of megawatts. With several thousand pulses per second this can be a unique source for attosecond science.

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          Author and article information

          Journal
          22 October 2021
          Article
          2110.11674
          5e0c8e38-4561-456e-8a27-c4c01ed83caa

          http://creativecommons.org/licenses/by/4.0/

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          Custom metadata
          DESY 21-162
          physics.acc-ph

          High energy & Particle physics
          High energy & Particle physics

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