Boston Micromachines Corporation — National Aeronautics and Space Administration SBIR Phase I: S2

Boston Micromachines Corporation — SBIR Phase I award from National Aeronautics and Space Administration.

Amount
$122,876
Agency
National Aeronautics and Space Administration
Program / Phase
SBIR · Phase I
Topic
S2
Solicitation
SBIR_18_P1
NAICS
Place of performance
MA
Period
2018-07-27 → 2019-02-15

Description

<p>The proposed innovation is a segmented, micromachined deformable mirror (DM) that can compensate tip-tilt-piston (TTP) positioning and stability errors of a segmented space-based primary mirror. This effort responds directly to the NASA FY2018 SBIR/STTR General Solicitation, Focus Area 10: Advanced Telescope Technologies, Subtopic S2.01: Proximity Glare Suppression for Astronomical Direct Detection. This subtopic focuses on new technological developments that are needed for exoplanet direct imaging, and specifically identifies wavefront measurement and control technologies as a key need. The core subject of this proposal is to develop a technology that is identified as critical in this subtopic: small-stroke, high-precision deformable mirrors and associated driving electronics. The solicitation specifically calls for a &ldquo;Deformable, calibrated, collimating source to simulate the telescope front end of a coronagraph undergoing thermal deformations.&rdquo; The proposed DM would have complementary uses for both simulating the front end of a coronagraph (as a surrogate for its primary) and precisely compensating wavefront errors in the front end of an actual coronagraph. High-precision deformable mirrors have applications relative to multiple NASA needs. Commercialization opportunities in astronomy and space science include both space telescopes such as the Large UV/Optical/Infrared Surveyor (LUVOIR) and Habitable Exoplanet Imaging Mission (HabEx) telescopes. &nbsp;The DM architectures to be developed in this project also have commercial applications in non-government markets, including space surveillance and biological microscopy. In the microscopy market especially, the TTP DM has become a commercial product used in two photon nonlinear microscopes through the pioneering efforts of Na Ji at Howard Hughes Medical Insitute&rsquo;s Janelia Research Campus.</p>