Structured illumination microscopy with extreme ultraviolet pulses

Fuente: arXiv
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Main Authors: Mincigrucci, R., Paltanin, E., Pelli-Cresi, J. -S., Gala, F., Pontecorvo, E., Foglia, L., De Angelis, D., Fainozzi, D., Gessini, A., Molina, D. S. P., Stranik, O., Wechsler, F., Heintzmann, R., Ruocco, G., Bencivenga, F., Masciovecchio, C.
Format: Preprint
Published: 2024
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author Mincigrucci, R.
Paltanin, E.
Pelli-Cresi, J. -S.
Gala, F.
Pontecorvo, E.
Foglia, L.
De Angelis, D.
Fainozzi, D.
Gessini, A.
Molina, D. S. P.
Stranik, O.
Wechsler, F.
Heintzmann, R.
Ruocco, G.
Bencivenga, F.
Masciovecchio, C.
author_facet Mincigrucci, R.
Paltanin, E.
Pelli-Cresi, J. -S.
Gala, F.
Pontecorvo, E.
Foglia, L.
De Angelis, D.
Fainozzi, D.
Gessini, A.
Molina, D. S. P.
Stranik, O.
Wechsler, F.
Heintzmann, R.
Ruocco, G.
Bencivenga, F.
Masciovecchio, C.
contents The relentless pursuit of understanding matter at ever-finer scales has pushed optical microscopy to surpass the diffraction limit and produced the super-resolution microscopy which enables visualizing structures shorter than the wavelength of light. In the present work, we harnessed extreme ultraviolet beams to create a sub-μm grating structure, which was revealed by extreme ultraviolet structured illumination microscopy. This achievement marks the first step toward extending such a super-resolution technique into the X-ray regime, where achieving atomic-scale resolution becomes a charming possibility.
format Preprint
id arxiv_https___arxiv_org_abs_2403_19382
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Structured illumination microscopy with extreme ultraviolet pulses
Mincigrucci, R.
Paltanin, E.
Pelli-Cresi, J. -S.
Gala, F.
Pontecorvo, E.
Foglia, L.
De Angelis, D.
Fainozzi, D.
Gessini, A.
Molina, D. S. P.
Stranik, O.
Wechsler, F.
Heintzmann, R.
Ruocco, G.
Bencivenga, F.
Masciovecchio, C.
Optics
Other Condensed Matter
The relentless pursuit of understanding matter at ever-finer scales has pushed optical microscopy to surpass the diffraction limit and produced the super-resolution microscopy which enables visualizing structures shorter than the wavelength of light. In the present work, we harnessed extreme ultraviolet beams to create a sub-μm grating structure, which was revealed by extreme ultraviolet structured illumination microscopy. This achievement marks the first step toward extending such a super-resolution technique into the X-ray regime, where achieving atomic-scale resolution becomes a charming possibility.
title Structured illumination microscopy with extreme ultraviolet pulses
topic Optics
Other Condensed Matter
url https://arxiv.org/abs/2403.19382