Solid State Heat Throttle for Pyroelectrics
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2026
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The work presented here demonstrates a solid-state solution for cooling pyroelectric sensors allowing for pyroelectric miniaturization, array implementation, and increased fieldability by eliminating the need for an optical chopper. Leveraging the electrocaloric effect in lithium niobate, a solid-state heat throttle was used in place of an optical chopper for signal modulation to prevent saturation of a pyroeolectic sensor. The sensor itself is also novel consisting of a translucent electrode design which shows 2.5 times amplitude improvement in signal capture over more traditional coating deigns in the range between 750-1400 nm. The sensor combined with the heat throttle produced superior signal capture with no optical optical chopper required.
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Keys, Christopher (2026). Solid State Heat Throttle for Pyroelectrics. Dissertation, Duke University. Retrieved from https://hdl.handle.net/10161/35344.
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