MiraSOL: a DMD-based spectrograph for resolved solar spectroscopy
Christian Robles, Suvrath Mahadevan, Lawrence Ramsey
astro-ph.IM, astro-ph.EP, astro-ph.SR
Submitted: 2026-08-10
Updated: 2026-08-25
Comments: 11 pages, 7 figures. Author's version of Paper 14154-220 presented at SPIE Astronomical Telescopes and Instrumentation, Advances in Optical and Mechanical Technologies for Telescopes and Instrumentation VII, July 2026. To appear in SPIE Proceedings Vol. 14154; typos corrected
License: http://creativecommons.org/licenses/by/4.0/
The gist: We present the science motivation, preliminary design requirements, device laboratory testing and a prototype for an new experimental platform for solar observations, MiraSOL.
Terminology
Abstract
We present the science motivation, preliminary design requirements, device laboratory testing and a prototype for an new experimental platform for solar observations, MiraSOL. MiraSOL will use digital micromirror technology to actively select regions on the solar disk for spectroscopic observation to determine the spatially dependent radial velocity signatures of stellar variability, and can create transits on the solar disk to probe the effects of stellar contamination on exoplanet transmission spectra. MiraSOL uses the Texas Instruments DLP801RE as a spatial light modulator to allow a mask, with 3 arcsecond spatial sampling per micromirror, capable of resolving features on the solar disk. This instrument will have a fiber output which can then be coupled with state-of-the-art extreme precision radial velocity (EPRV) spectrometers, such as HPF or NEID, for high resolving power, stable spectra of sunspots and plage, or a low resolution spectrometer for studies of stellar contamination in transit spectra. We discuss a 60 Hz flicker signal we discovered, likely due to the commercial off-the-shelf (COTS) evaluation board of the digital micromirror device electronics. We also build a proof-of-concept prototype and demonstrate imaging and pixel-level control of the full solar disk to demonstrate the feasibility of this technology.
Sources
- Precise Radial Velocities
- Extreme Precision Radial Velocity Working Group Final Report
- Earths within Reach: Evaluation of Strategies for Mitigating Solar Variability using 3.5 years of NEID Sun-as-a-Star Observations
- PoET: the Paranal solar ESPRESSO Telescope
- A General, Differentiable Transit Model for Ellipsoidal Occulters: Derivation, Application, and Forecast of Planetary Oblateness and Obliquity Constraints with JWST
- Slow Rotation for the Super-Puff Planet Kepler-51d
- HEP digital micromirror devices for precision solar spectroscopy
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