2022
DOI: 10.1364/jot.89.000359
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Formation of periodic relief structures in thin chromium films using laser interference lithography

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Cited by 3 publications
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“…These optical components, which reflect or transmit light, are characterized by the amplitude and phase function of the reflection or transmission, which is determined by the conditions of the wavefield transformation problem to be solved. The components have microscopic surface structures created using nanophotolithography technologies or direct laser writing techniques [145,146]. With the ability to fine-tune the phase and amplitude of the laser beam, diffractive computer optics allows for a high degree of focusing and minimizes the size of the focused spot.…”
Section: Wavefront Shaping For Laser-initiated Processesmentioning
confidence: 99%
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“…These optical components, which reflect or transmit light, are characterized by the amplitude and phase function of the reflection or transmission, which is determined by the conditions of the wavefield transformation problem to be solved. The components have microscopic surface structures created using nanophotolithography technologies or direct laser writing techniques [145,146]. With the ability to fine-tune the phase and amplitude of the laser beam, diffractive computer optics allows for a high degree of focusing and minimizes the size of the focused spot.…”
Section: Wavefront Shaping For Laser-initiated Processesmentioning
confidence: 99%
“…technologies or direct laser writing techniques [145,146]. With the ability to fine-tune the phase and amplitude of the laser beam, diffractive computer optics allows for a high degree of focusing and minimizes the size of the focused spot.…”
Section: Wavefront Shaping For Laser-initiated Processesmentioning
confidence: 99%