Low Energy Photon Detection (低能量光子探測)
Guo, Tianyi
- 出版商: Springer
- 出版日期: 2024-10-02
- 售價: $5,170
- 貴賓價: 9.5 折 $4,912
- 語言: 英文
- 頁數: 51
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 3031715438
- ISBN-13: 9783031715433
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相關主題
商品描述
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.
商品描述(中文翻譯)
這篇論文展示了旨在推進下一代長波紅外(LWIR)光檢測器和相機的創新新方法。在室溫下檢測LWIR光一直是一個持續的挑戰,因為光子的能量較低。追求一種能在室溫下檢測的經濟實惠且高性能的LWIR相機已經歷了幾十年的努力。文中詳細介紹的兩種方法旨在提供高檢測性、快速響應時間和室溫操作。第一種方法涉及利用石墨烯中的Dirac等離子體和塞貝克效應來創建光熱電檢測器。第二種方法則是使用與相變材料集成的振盪電路,並通過紅外照明引起的頻率調制來實現LWIR檢測。最後,基於石墨烯的檢測器與讀出電路集成,以促進密集像素焦平面的發展,這對商業化具有強大的潛力。從新材料到設備再到功能相機的過程,對於光子檢測領域的研究人員來說,是必讀的資料。
作者簡介
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.
作者簡介(中文翻譯)
郭天怡博士於2023年獲得中央佛羅里達大學的物理學博士學位。目前他是中央佛羅里達大學的博士後研究學者。他的研究專注於使用等離子體和相變材料進行長波紅外檢測。