English

He'e-Lab: A modular testbed for astrophotonics and wavefront sensing development

Instrumentation and Methods for Astrophysics 2026-08-05 v1

Abstract

Advanced astronomical instrumentation requires accessible, reconfigurable platforms to validate novel technologies and algorithms before on-sky deployment. We present the design, architecture, and alignment validation of the Hawaii Experimental Engineering Lab (He'e-Lab), a state-of-the-art modular testbed dedicated to two complementary research tracks: (A) the integration and characterization of astrophotonics components within a real-time computing loop, and (B) the development of advanced wavefront sensing and control (WFS&C) algorithms. The testbed features a broadband supercontinuum source (500 nm to 2 microns), a high-order 1k-actuator Boston Micromachines deformable mirror, and a 37-segment hexagonal mirror assembly providing piston-tip-tilt control to emulate segmented apertures like Keck and JWST. Downstream capabilities include a HASO 126 Shack-Hartmann sensor, a real-time computing environment driven by the CACAO package, and a modular injection platform coupled to a visible-wavelength spectrograph (R3, 000). We report on the successful system alignment and outline the roadmap for upcoming adaptive optics and photonic device validation frameworks.

Cite

@article{arxiv.2608.04316,
  title  = {He'e-Lab: A modular testbed for astrophotonics and wavefront sensing development},
  author = {Sebastien Vievard and Christopher Hamner and Nour Skaf and Dylan Hively and Michael Bottom and Mark Chun and Christoph Baranec and Olivier Guyon and Julien Lozi and Aidan Walk and Josh Corn and Branden Allen and Elsa Huby and Sylvestre Lacour and Guillermo Martin and Manon Lallement and Vincent Deo},
  journal= {arXiv preprint arXiv:2608.04316},
  year   = {2026}
}

Comments

Proceeding of SPIE Astronomical Telescopes + Instrumentation 2026 (Paper No. 14150-121)