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Academic paper

Laboratory characterization of iLocater

Authors: Marcelo Tala Pinto, Marshall C. Johnson, Julia Brady, Xavier Lesley-Salda\~na, Jonathan Crass, Allie Renshaw, Michael Engelman, Brian Sands, Daniel Pappalardo, Christian Schwab, Julian St\"urmer, Dane Zielinski-Nicolson, Stanimir Letchev, Matheus J. Castro, Thomas Legero, Ondrej Kitzler, Jacob Pember, Richard Pogge, Justin R. Crepp, Andrew Bechter, Eric BechterPublished: 2026-07-29Paper ID: 2607.27356Category: astro-ph.IMLicense: CC BY 4.0

Abstract

iLocater is a diffraction-limited, fiber-fed spectrograph designed for the Large Binocular Telescope (LBT), which targets high-precision radial velocity measurements in the near-infrared. Prior to deployment, comprehensive laboratory characterization was essential to validate instrument performance and inform alignment strategies. This paper presents results from four key areas of lab characterization: (1) adjustment and optimization of detector orientation to optimize spectrum alignment with the detector pixel grid across the focal plane; (2) the design and installation of a LED illumination source to enable high-fidelity flat-fields; (3) a model-based focusing methodology using OpticStudio image simulations to optimize the optical alignment of the spectrograph; and (4) assessment of instrument mechanical and optical stability under laboratory conditions. Together, these efforts established baseline performance metrics and demonstrated instrument readiness for delivery and on-sky commissioning.

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