AI Article Synopsis

  • A new imaging EUV-soft X-ray spectrometer and monochromator has been designed, achieving over 60% throughput efficiency and a high spectral resolution of λ/Δλ > 200 without using variable line spacing gratings.
  • The system utilizes conical diffraction geometry for optimal imaging across a wide spectral range while preserving polarization states and ensuring minimal temporal dispersion, with pulse broadening confined to 80 fs.
  • This versatile instrument can be easily converted into a monochromator, enabling coherent diffractive imaging in the EUV-soft X-ray range and enhancing the ability to study complex nano- and bio-systems with improved resolution, reaching the nanometer-femtosecond scale.

Article Abstract

We demonstrate a novel flat-field, dual-optic imaging EUV-soft X-ray spectrometer and monochromator that attains an unprecedented throughput efficiency exceeding 60% by design, along with a superb spectral resolution of λ/Δλ > 200 accomplished without employing variable line spacing gratings. Exploiting the benefits of the conical diffraction geometry, the optical system is globally optimized in multidimensional parameter space to guarantee optimal imaging performance over a broad spectral range while maintaining circular and elliptical polarization states at the first, second, and third diffraction orders. Moreover, our analysis indicates minimal temporal dispersion, with pulse broadening confined within 80 fs tail-to-tail and an FWHM value of 29 fs, which enables ultrafast spectroscopic and pump-probe studies with femtosecond accuracy. Furthermore, the spectrometer can be effortlessly transformed into a monochromator spanning the EUV-soft X-ray spectral region using a single grating with an aberration-free spatial profile. Such capability allows coherent diffractive imaging applications to be conducted with highly monochromatic light in a broad spectral range and extended to the soft X-ray region with minimal photon loss, thus facilitating state-of-the-art imaging of intricate nano- and bio-systems, with a significantly enhanced spatiotemporal resolution, down to the nanometer-femtosecond level.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10772113PMC
http://dx.doi.org/10.1038/s41377-023-01342-9DOI Listing

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Article Synopsis
  • A new imaging EUV-soft X-ray spectrometer and monochromator has been designed, achieving over 60% throughput efficiency and a high spectral resolution of λ/Δλ > 200 without using variable line spacing gratings.
  • The system utilizes conical diffraction geometry for optimal imaging across a wide spectral range while preserving polarization states and ensuring minimal temporal dispersion, with pulse broadening confined to 80 fs.
  • This versatile instrument can be easily converted into a monochromator, enabling coherent diffractive imaging in the EUV-soft X-ray range and enhancing the ability to study complex nano- and bio-systems with improved resolution, reaching the nanometer-femtosecond scale.
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