High-resolution ptychographic imaging at a seeded free-electron laser source using OAM beams

Author:

Pancaldi Matteo12ORCID,Guzzi Francesco1ORCID,Bevis Charles S.3,Manfredda Michele1,Barolak Jonathan4,Bonetti Stefano25ORCID,Bykova Iuliia6,De Angelis Dario1,De Ninno Giovanni17,Fanciulli Mauro89ORCID,Novinec Luka1,Pedersoli Emanuele1ORCID,Ravindran Arun7,Rösner Benedikt6ORCID,David Christian6ORCID,Ruchon Thierry9,Simoncig Alberto1,Zangrando Marco110ORCID,Adams Daniel E.4,Vavassori Paolo1112ORCID,Sacchi Maurizio1314ORCID,Kourousias George1ORCID,Mancini Giulia F.3ORCID,Capotondi Flavio1

Affiliation:

1. Elettra-Sincrotrone Trieste S.C.p.A.

2. Ca’ Foscari University of Venice

3. University of Pavia

4. Colorado School of Mines

5. Stockholm University

6. Paul Scherrer Institut

7. University of Nova Gorica

8. CY Cergy Paris Université, CEA, LIDYL

9. Université Paris-Saclay, CEA, LIDYL

10. Istituto Officina dei Materiali, CNR

11. CIC nanoGUNE BRTA

12. IKERBASQUE, Basque Foundation for Science

13. Sorbonne Université, CNRS, Institut des NanoSciences de Paris, INSP

14. Synchrotron SOLEIL, L’Orme des Merisiers

Abstract

Electromagnetic waves possessing orbital angular momentum (OAM) are powerful tools for applications in optical communications, quantum technologies, and optical tweezers. Recently, they have attracted growing interest since they can be harnessed to detect peculiar helical dichroic effects in chiral molecular media and in magnetic nanostructures. In this work, we perform single-shot per position ptychography on a nanostructured object at a seeded free-electron laser, using extreme ultraviolet OAM beams of different topological charge orders generated with spiral zone plates. By controlling , we demonstrate how the structural features of OAM beam profiles determine an improvement of about 30% in image resolution with respect to conventional Gaussian beam illumination. This result extends the capabilities of coherent diffraction imaging techniques, and paves the way for achieving time-resolved high-resolution (below 100 nm) microscopy on large area samples.

Funder

European Research Council

Fondazione Cariplo

Ministero dell’Università e della Ricerca

HORIZON EUROPE Marie Sklodowska-Curie Actions

Knut och Alice Wallenbergs Stiftelse

Javna Agencija za Raziskovalno Dejavnost RS

H2020 Excellent Science

Ministerio de Ciencia e Innovación

Agence Nationale de la Recherche

Publisher

Optica Publishing Group

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