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Developing a Wyne Corrector for higher spectral bandwidth focal plane wavefront sensing

Instrumentation and Methods for Astrophysics 2024-07-18 v1 Optics

Abstract

Focal plane wavefront sensing techniques are generally limited to using imaging systems that have below 1% spectral bandwidths, due to the radial smearing of speckles from chromatic diffraction that causes optical image magnification over larger spectral bandwidths. Wyne (1979) designed a pair of triplet lenses to optically minimize this chromatic magnification and increase the spectral bandwidth. Such a Wyne corrector could enable focal plane wavefront sensing at up to 50% spectral bandwidths and as a result open enable >50x>50x higher-speed focal plane wavefront sensing. We present results of the design and laboratory testing of a Wyne corrector prototype, including a detailed tolerancing analysis considering manufactural wavelength ranges and alignment tolerances. These tests show promising results that this technology can be deployed to current and future high speed focal plane wavefront sensing instruments to enable significant performance enhancements. This document number is LLNL-ABS-857246.

Keywords

Cite

@article{arxiv.2407.12666,
  title  = {Developing a Wyne Corrector for higher spectral bandwidth focal plane wavefront sensing},
  author = {Dominic F. Sanchez and Benjamin L. Gerard and Bautista R. Fernandez and Brian Bauman and Philip M. Hinz},
  journal= {arXiv preprint arXiv:2407.12666},
  year   = {2024}
}

Comments

5 pages, 5 figures, submitted to SPIE proceedings

R2 v1 2026-06-28T17:44:37.183Z