Ultra-broadband extreme-ultraviolet lensless imaging of extended complex structures
arXiv:1302.6064 · doi:10.1038/lsa.2014.44
Abstract
Lensless imaging is an elegant approach to high-resolution microscopy, which is rapidly gaining popularity in applications where imaging optics are problematic. However, current lensless imaging methods require objects to be placed within a well-defined support structure, while the light source needs to have a narrow, stable, and accurately known spectrum. Here we introduce a general approach to lensless imaging without spectral bandwidth limitations or sample requirements. We use two time-delayed coherent light pulses, and show that scanning the pulse-to-pulse time delay allows the reconstruction of diffraction-limited images for all spectral components in the pulse. Moreover, an iterative phase retrieval algorithm is introduced, which uses these spectrally resolved Fresnel diffraction patterns to obtain high-resolution images of complex extended objects without any support requirements. We demonstrate this two-pulse imaging method with octave-spanning visible light sources (in both transmission and reflection geometries), and with broadband extreme-ultraviolet radiation from a high-harmonic source. This demonstrates that our approach enables effective use of low-flux ultra-broadband sources, such as table-top soft-X-ray systems, for high-resolution imaging.
14 pages, 7 figures
References in corpus (5)
- Bright Coherent Ultrahigh Harmonics in the keV X-Ray Regime from Mid-Infrared Femtosecond Lasers
- X-ray image reconstruction from a diffraction pattern alone
- A unified evaluation of iterative projection algorithms for phase retrieval
- Solution to the twin image problem in holography
- Ultrafast, ultrabright, X-ray holography using a uniformly-redundant array
Cited by in corpus (16)
- Experimental control of quantum-mechanical entanglement in an attosecond pump-probe experiment
- Ptychographic hyperspectral spectromicroscopy with an extreme ultraviolet high harmonic comb
- Potential of attosecond coherent diffractive imaging
- Spatially Resolved Fourier Transform Spectroscopy in the Extreme Ultraviolet
- Divergence control of high-harmonic generation
- Hyperspectral phase imaging based on denoising in complex-valued eigensubspace
- Diffractive shear interferometry for extreme ultraviolet high-resolution lensless imaging
- Broadband holography-assisted coherent imaging -- towards attosecond imaging at the nanoscale
- A temporal model for quasi-phase matching in high-order harmonic generation
- Spin high-harmonic generation through terahertz laser-driven phonons
- Agile spectral tuning of high order harmonics by inteference of two driving pulses
- Cluster size dependence of high-order harmonic generation
- Gaussian-Schell analysis of the transverse spatial properties of high-harmonic beams
- Incoherent lensless imaging via coherency back-propagation
- Broadband ptychography using curved wavefront illumination
- Broadband Coherent Diffraction for Single-Shot Attosecond Imaging