The Project

What we aim for

HyperMaSH introduces Vector-Time-Color Hyper Lithography, engineering intensity, polarization, time evolution, and wavelength together in a single holographic exposure. Using reversible azobenzene materials and holographic tools, it aims to directly produce high-resolution diffractive elements by using only light
  • ⁠Planar optical elements 
  • ⁠⁠Azopolymer photopatterning
  • ⁠Digital holographic photolithography 
  • ⁠⁠Azobenzene-containing materials 
  • ⁠⁠Dynamic structured light
  • ⁠⁠Super-resolution lithography
  • Planar optical elements 
  • Azopolymer photopatterning
  • Digital holographic photolithography
  • Azobenzene-containing materials 
  • Dynamic structured light
  • Super-resolution lithography

Team Members

fun and facts

3457 h

Laser On-Time

10485 µm²

Total Area Patterned

975 +

Exposure Runs Completed

20 +

Alignments Performed

Collaborators

David McGee

Professor of Physics at the College of New Jersey, USA.

Marina Saphiannikova

Head of department “Material Theory and Modeling”, Leibniz Institute of Polymer Research Dresden, Dresden, Germany

Fabio Borbone

Associate Professor at Department of Chemical Science of University of Naples Federico II

Giovanni Acampora

Full Professor at Department of Physics of University of Naples Federico II

Nikolai Liubimtsev

PostDoc at Leibniz Institute of Polymer Research Dresden, Germany 

Homepage HyperMaSH