Resonant Infrared Detectors and Emitters (共振紅外探測器與發射器)
Choi, Kwong-Kit
- 出版商: World Scientific Pub
- 出版日期: 2024-06-18
- 售價: $6,230
- 貴賓價: 9.5 折 $5,919
- 語言: 英文
- 頁數: 536
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 9811286515
- ISBN-13: 9789811286513
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商品描述
This book is a sequel of The Physics of Quantum Well Infrared Photodetectors (1997), which covered the basic physics of QWIPs. In the intervening 27 years, QWIP properties pertinent to infrared detection are much better understood, and QWIP technology has become a mainstream, widely deployed infrared technology. The main progress is the ability to know the QWIP absorption quantum efficiency quantitatively through rigorous electromagnetic modeling. The lack of theoretical prediction has impeded QWIP development for a long time. Generally, an arbitrary choice of detector structures yields substantial variations of absorption properties, and QWIP was regarded as a low quantum efficiency detector. With the advent of electromagnetic modeling, quantum efficiency of any detector geometry can be known exactly and be optimized to attain a large satisfactory value. Consequently, all properties of QWIPs are predictable, not unlike prevailing silicon devices. This unique characteristic enables QWIP to be the most manufacturable long wavelength infrared technology in mass production. This book by K K Choi, a co-inventor of QWIPs, will capture this exciting development.Based on the materials expounded in the book, the reader will know key performance metrics in infrared detection, in-depth knowledge of QWIP material and structural designs, array production, its application, and practical knowledge of electromagnetic modeling. In addition, the book will describe using micro- and nano-structures to enhance the emission properties of active and passive optical emitters, similar to detectors. The application of rigorous electromagnetic modeling to optical emitters is new to the optoelectronic community. The resonator-pixel emitter structure with its modeling method will no doubt be able to attract substantial academic and industrial attention in years to come.
商品描述(中文翻譯)
本書是《量子井紅外光電偵測器的物理學》(1997)的續集,該書涵蓋了QWIP的基本物理學。在過去的27年中,與紅外偵測相關的QWIP特性已被更好地理解,QWIP技術已成為主流且廣泛應用的紅外技術。主要的進展在於能夠通過嚴謹的電磁建模定量了解QWIP的吸收量子效率。理論預測的缺乏長期以來阻礙了QWIP的發展。一般而言,隨意選擇的偵測器結構會導致吸收特性的顯著變化,QWIP曾被視為低量子效率的偵測器。隨著電磁建模的出現,任何偵測器幾何形狀的量子效率都可以準確知道並優化,以達到較大的滿意值。因此,QWIP的所有特性都是可預測的,與現行的矽設備並無二致。這一獨特特性使得QWIP成為最具可製造性的長波長紅外技術,適合大規模生產。本書由QWIP的共同發明人K K Choi撰寫,將捕捉這一令人振奮的發展。根據書中闡述的材料,讀者將了解紅外偵測的關鍵性能指標、QWIP材料和結構設計的深入知識、陣列生產、其應用以及電磁建模的實用知識。此外,本書將描述如何使用微納米結構來增強主動和被動光學發射器的發射特性,類似於偵測器。將嚴謹的電磁建模應用於光學發射器對於光電社群來說是全新的。共振腔像素發射器結構及其建模方法無疑將在未來幾年吸引大量的學術和產業關注。