Diffraction and background-limited operation at room temperature is the ultimate goal of the infrared physicist. The achievement of this goal is strongly dependent on the hybridization technology utilized in bonding the IR focal plane array to the Si ROIC. To this end, this book describes a disruptive architecture in the field of hybridization known as the vertically integrated photodiode.
This technology, as applied specifically to HgCdTe, is described in detail by the author. However, it can in principle be applied to any IR semiconducting material system, provided suitable dry etch and passivation technologies exist. The limitations of the many current and varied IR architectures are discussed with regard to diffraction and background-limited performance as a function of operating temperature.
Shockley-Read-Hall lifetime is found to be a major factor in these considerations, for which HgCdTe has no IR equal. However, a number of scientific and engineering challenges remain within the HgCdTe materials system before ultimate performance can be achieved. A discussion of those challenges, together with possible outcomes, constitutes the basis of this book.
| ISBN: | 9781510688742 |
| Publication date: | 23rd January 2026 |
| Author: | Michael Kinch |
| Publisher: | SPIE an imprint of SPIE Press |
| Format: | Paperback |
| Pagination: | 220 pages |
| Series: | Press Monographs |
| Genres: |
Applied optics |
Diffraction and background-limited operation at room temperature is the ultimate goal of the infrared physicist. The achievement of this goal is strongly dependent on the hybridization technology utilized in bonding the IR focal plane array to the Si ROIC.
The Vertically Integrated HgCdTe Photodiode features in the following genres: Applied optics
Paperback. £30.60, down from the £34.00 cover price. Not Available.
The Vertically Integrated HgCdTe Photodiode was written by Michael Kinch and published by SPIE an imprint of SPIE Press
The Vertically Integrated HgCdTe Photodiode has 220 pages
Yes it is part of Press Monographs series
£30.60, reduced from £34.00. Not Available.