Low Energy Photon Detection

Author:   Tianyi Guo
Publisher:   Springer International Publishing AG
ISBN:  

9783031715464


Pages:   51
Publication Date:   03 October 2025
Format:   Paperback
Availability:   Not yet available   Availability explained
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Low Energy Photon Detection


Overview

This thesis showcases innovative new approaches aimed at advancing the next generation of long wave infrared (LWIR) light detectors and cameras. Detecting LWIR light at room temperature has posed a persistent challenge due to the low energy of photons. The pursuit of an affordable, high-performance LWIR camera capable of room temperature detection has spanned several decades. The two approaches detailed within are designed to offer high detectivity, swift response times, and room temperature operation. The first involves harnessing the Dirac plasmon and the Seebeck effect in graphene to create a photo-thermoelectric detector. The second entails the use of an oscillating circuit integrated with phase change materials and the modulation of frequency induced by infrared illumination to achieve LWIR detection. Finally, the graphene-based detectors are integrated with readout circuits to enable the development of a dense pixel focal plane which has strong potential for commercialization. The journey from novel material to device to functional camera presented here is essential reading for researchers in the field of photon detection.

Full Product Details

Author:   Tianyi Guo
Publisher:   Springer International Publishing AG
Imprint:   Springer International Publishing AG
ISBN:  

9783031715464


ISBN 10:   3031715462
Pages:   51
Publication Date:   03 October 2025
Format:   Paperback
Publisher's Status:   Active
Availability:   Not yet available   Availability explained
This item is yet to be released. You can pre-order this item and we will dispatch it to you upon its release.

Table of Contents

Chapter 1: Introduction.- Chapter 2: Dynamically Tunable Long Wave Infared Detection.- Chapter 3: Frequency Modulation Based Infrared Detection.- Chapter 4: Dense Pixel Array Integration.- Chapter 5: Conclusion and Future.

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Author Information

Dr. Tianyi Guo obtained a Ph.D in Physics from the University of Central Florida in 2023. He is currently a postdoctoral scholar at the University of Centra Florida. His research is focused on long wave infrared detections with plasmonic and phase change materials.

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