← Back to NASA Technology Projects

Porous Silicon for Enhanced Detectors

Completed TRL 3 (started at 2, targeting 3)

Description

The very large surface area to volume ratio, and tunable thermal and optical properties provides a unique and adaptable material to push the performance of next generation sensors, MEMS devices, and optical components. In FY2015 we will continue to characterize the thermal properties of porous silicon and use this data to build a low thermal conductivity support structure for a prototype bolometer detector. This will provide a basis for higher performance and higher fill-factor detector arrays for future NASA missions In addition, we will explore the optical properties of the etched porous silicon layers to construct a multilayer infrared filter which has general applicability for Mid-IR and Terahertz instruments.

   In FY2015, we will move forward with proof-of-concept devices that will show the feasibility of exploiting porous silicon for its thermal and optical properties. Porous Silicon is formed by an electrochemical etch of a silicon surface in a solution of a hydrofluoric-acid-based electrolyte.    The etching process turns the crystalline solid into one with a network of nano-capillaries creating nanopores of varying surface to volume ratio depending on the selected conditions. The porosity of the silicon may be varied over a wide range.

We have two cross cutting goals for the coming year.   First, we will build a simple support structure for a single pixel bolometer prototype that incorporates porous silicon with high critical temperature pixels. The electrical routing between the pixel and the support will be done with high resolution gold patterning.  We will  also continue to explore the multilayers of porous silicon and silicon structures.  We will begin rigorous characterization to study how well the thickness and refractive index can be controlled.

 

 

Benefits

Next Generation NASA Missions that use cryogenic detector arrays

Details

Technology areaSensors and Instruments > Remote Sensing Instruments and Sensors > Detectors and Focal Planes
ProgramCenter Independent Research & Development: GSFC IRAD (GSFC IRAD)
Lead organizationGoddard Space Flight Center, Greenbelt, MD
Start date2013-10-01
End date2015-09-01

Project contacts

Listed on TechPort itself — the most direct way to ask about this specific project.

How to get involved

This is early/mid-stage (TRL 3) — the most realistic path in is NASA SBIR/STTR, which funds small businesses and research institutions to develop technology aligned with NASA's needs (equity-free, phased funding). Check whether a current SBIR/STTR solicitation topic overlaps with this project's technology area, or contact the project directly (above) to ask.

None of these are guaranteed paths for this specific project — TechPort itself doesn't have an "apply" button. Reaching out to the contact(s) above with a specific question is usually the fastest way to find out what's actually open.