Parallel Diffractive Multi-beam Ultrafast Laser Microprocessing: Increasing Efficiency of Ultrafast Laser Fabrication by Creation of Multi-beam Patterns Using a Spatial Light Modulator - Zheng Kuang - Bücher - LAP LAMBERT Academic Publishing - 9783659157769 - 14. Juni 2012
Bei Nichtübereinstimmung von Cover und Titel gilt der Titel

Parallel Diffractive Multi-beam Ultrafast Laser Microprocessing: Increasing Efficiency of Ultrafast Laser Fabrication by Creation of Multi-beam Patterns Using a Spatial Light Modulator

Preis
€ 58,99

Bestellware

Lieferdatum: ca. 6. - 12. Jan 2026
Weihnachtsgeschenke können bis zum 31. Januar umgetauscht werden
Zu deiner iMusic Wunschliste hinzufügen
oder

Ultrafast lasers have been widely employed for material micro/nano processing with little thermal damage. Due to the ultra high intensity of ultrashort pulses, nonlinear absorption can be induced at the focus leading to highly localised material ablation or modification. This is now opening up applications ranging from integrated optics, through multi-photon induced refractive index engineering to precision surface micro-structuring. To ensure the non-thermal processing, input pulse energy must be kept around micro-joule level. However, running at kilohertz repetition rate, many ultrafast laser systems can provide milli-joule level output. Therefore, significant energy attenuation causes a great deal of energy loss. With this limitation in mind, a multi-beam ultrafast laser processing, where the milli-joule output is split into many desired diffracted beams, is proposed in this book. The multi-beam patterns are generated by phase modulation through a Spatial Light Modulator (SLM) and can be applied in real time with synchronized scanning methods. The results demonstrate high precision parallel ultrafast laser micro/nano fabrication with greatly increased efficiency and throughput.

Medien Bücher     Taschenbuch   (Buch mit Softcover und geklebtem Rücken)
Erscheinungsdatum 14. Juni 2012
ISBN13 9783659157769
Verlag LAP LAMBERT Academic Publishing
Seitenanzahl 200
Maße 150 × 12 × 226 mm   ·   316 g
Sprache Deutsch