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In materials science, direct laser interference patterning (DLIP) is a laser-based technology that uses the physical principle of interference of high-intensity coherent laser beams to produce functional periodic microstructures. In order to obtain interference, the beam is divided by a beam splitter, special prisms, or other elements. The beams are then folded together to form an interference pattern. Sufficiently high power of the laser beam can thus result in the removal of material at the interference maximums thanks to ablation phenomenon, leaving the material intact at the minimums. In this way, a repeatable pattern can be permanently fixed on the surface of a given material. DLIP can be applied to almost any material and can change the properties of surfaces in many technological ar

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  • In materials science, direct laser interference patterning (DLIP) is a laser-based technology that uses the physical principle of interference of high-intensity coherent laser beams to produce functional periodic microstructures. In order to obtain interference, the beam is divided by a beam splitter, special prisms, or other elements. The beams are then folded together to form an interference pattern. Sufficiently high power of the laser beam can thus result in the removal of material at the interference maximums thanks to ablation phenomenon, leaving the material intact at the minimums. In this way, a repeatable pattern can be permanently fixed on the surface of a given material. DLIP can be applied to almost any material and can change the properties of surfaces in many technological areas with regard to electrical and optical properties, tribology (friction and wear), light absorption and wettability (e.g., which can be related to hygienic properties). (en)
  • Die direkte Laserstrahlinterferenzstrukturierung, im Englischen Direct Laser Interference Patterning (DLIP), ist eine laserbasierte Technologie, welche das physikalische Prinzip der Interferenz von hochintensiven kohärenten Laserlichtstrahlen nutzt, um funktionelle periodische Mikrostrukturen herzustellen. DLIP kann auf nahezu jedem Material angewendet werden und verändert die Eigenschaften der Oberflächen in vielen Bereichen hinsichtlich elektrischer und optischer Eigenschaften, der Tribologie (Reibung und Verschleiß), Lichtabsorption und Benetzungsfähigkeit (damit in Zusammenhang auch hygienischer Eigenschaften). (de)
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  • Die direkte Laserstrahlinterferenzstrukturierung, im Englischen Direct Laser Interference Patterning (DLIP), ist eine laserbasierte Technologie, welche das physikalische Prinzip der Interferenz von hochintensiven kohärenten Laserlichtstrahlen nutzt, um funktionelle periodische Mikrostrukturen herzustellen. DLIP kann auf nahezu jedem Material angewendet werden und verändert die Eigenschaften der Oberflächen in vielen Bereichen hinsichtlich elektrischer und optischer Eigenschaften, der Tribologie (Reibung und Verschleiß), Lichtabsorption und Benetzungsfähigkeit (damit in Zusammenhang auch hygienischer Eigenschaften). (de)
  • In materials science, direct laser interference patterning (DLIP) is a laser-based technology that uses the physical principle of interference of high-intensity coherent laser beams to produce functional periodic microstructures. In order to obtain interference, the beam is divided by a beam splitter, special prisms, or other elements. The beams are then folded together to form an interference pattern. Sufficiently high power of the laser beam can thus result in the removal of material at the interference maximums thanks to ablation phenomenon, leaving the material intact at the minimums. In this way, a repeatable pattern can be permanently fixed on the surface of a given material. DLIP can be applied to almost any material and can change the properties of surfaces in many technological ar (en)
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  • Direct Laser Interference Patterning (de)
  • Direct laser interference patterning (en)
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