Literature DB >> 27409216

Imprinting high-gradient topographical structures onto optical surfaces using magnetorheological finishing: manufacturing corrective optical elements for high-power laser applications.

Joseph A Menapace, Paul E Ehrmann, Andrew J Bayramian, Amber Bullington, Jean-Michel G Di Nicola, Constantin Haefner, Jeffrey Jarboe, Christopher Marshall, Kathleen I Schaffers, Cal Smith.   

Abstract

Corrective optical elements form an important part of high-precision optical systems. We have developed a method to manufacture high-gradient corrective optical elements for high-power laser systems using deterministic magnetorheological finishing (MRF) imprinting technology. Several process factors need to be considered for polishing ultraprecise topographical structures onto optical surfaces using MRF. They include proper selection of MRF removal function and wheel sizes, detailed MRF tool and interferometry alignment, and optimized MRF polishing schedules. Dependable interferometry also is a key factor in high-gradient component manufacture. A wavefront attenuating cell, which enables reliable measurement of gradients beyond what is attainable using conventional interferometry, is discussed. The results of MRF imprinting a 23 μm deep structure containing gradients over 1.6 μm / mm onto a fused-silica window are presented as an example of the technique's capabilities. This high-gradient element serves as a thermal correction plate in the high-repetition-rate advanced petawatt laser system currently being built at Lawrence Livermore National Laboratory.

Entities:  

Year:  2016        PMID: 27409216     DOI: 10.1364/AO.55.005240

Source DB:  PubMed          Journal:  Appl Opt        ISSN: 1559-128X            Impact factor:   1.980


  1 in total

1.  High-Accuracy Surface Topography Manufacturing for Continuous Phase Plates Using an Atmospheric Pressure Plasma Jet.

Authors:  Huiliang Jin; Caixue Tang; Haibo Li; Yuanhang Zhang; Yaguo Li
Journal:  Micromachines (Basel)       Date:  2021-06-10       Impact factor: 2.891

  1 in total

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