1 - 10 of 55 Search Results for fused silica
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... is demonstrated in a thickness range of 1nm. . see article on page 7 The effects of low fluence deep UV excimer laser radiation on synthetic fused silica have been studied at Corning Inc. for several years. These effects include laser induced absorption, density changes, and a photorefractive effect ...
Related Searches: excimer laser | highlights
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4.
pdf_130
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... in materials that are difficult to process at other common laser wavelengths even for tough, high-band-gap materials such as PTFE, silicon and fused silica. In Highlights No. 54 we reported about the first 157nm applications in DUV microlithography that achieved resolution in the sub-100 nm region. ...
Related Searches: scanmate | ptfe | lpx 300 | dye laser
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5.
Excimer
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Excimer Excimer lasers are the most powerful and versatile light sources in the UV range of the electromagnetic spectrum. Because of their cold ablation and short wavelength excimer lasers are used for countless applications. Office Locations To locate your nearest Coherent office for Eximer laser products ...
Related Searches: excimer | excimer laser | tui laser | laser catalog
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8.
Glass Micromachining with Ultrafast Lasers
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... .) microscope objective was used to focus the beam to a 5-µm spot diameter on a motorized Aerotech XY table. Results: Figure 1 shows a micromachined fused silica sample. This clearly illustrates the precise nature of the process, which is characterized by virtually no peripheral thermal damage. This ...
Related Searches: glass cutting | fs | glasses | rega 9000
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9.
pdf_129
(PAGE 3 OF 8)
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... , with a surface quality close to that of optics. Despite these technological advantages of 193 nm radiation, it is impossible to structure fused silica (quartz glass), or even polytetrafluorineethylene PTFE (trade name Teflon). Only the use of F2 lasers ( = 157 nm) and the corresponding systems technology ...
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10.
pdf_126
(PAGE 9 OF 12)
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... . Rev. Lett. 81, 645 (1998). [3] J. Lambers and P. Hess, Thin Solid Films 400, 111 (2001). [4] J. Lambers and P. Hess, to be published. Synthetic fused silica is the material of choice for optical lens elements in deep ultra-violet (DUV) applications, particularly in DUV optical microlithography. Fused ...
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