A Comparative Structural, Optical and Electrical Properties of Metal–Semiconductor–Metal Based on Inalas /Ingaas
Authors
Benzeghda Sabah1, *, Bouhadiche Adil2, Benghorieb Soulef2, Irma saraswati3, F Hobar1
1Microsystems and Instrumentation Laboratory Department of Electronics, Faculty of Engineering Sciences University Mentouri Constantine, Algeria
2Research Unit Optics (UROP) Center for development of advanced Technologies (CDTA) University of Setif
3Electrical Department Faculty of Engineering Univerfitas Sultan Ageng Tirtasa Banten
*Corresponding author. Email: benzeghdasabah@gmail.com
Corresponding Author
Benzeghda Sabah
Available Online 1 February 2022.
- DOI
- 10.2991/aer.k.220131.025How to use a DOI?
- Keywords
- Metal-Semiconductor; Optical Properties; Metal Based Inalas
- Abstract
Interdigitated metal–semiconductor–metal (MSM) photodetectors based on InAlAs/InGaAs materials have attracted much attention for applications in high-speed optical-fiber communication systems which need efficient light detection in the 1.3-1.55 µm range [1]. The performance of thin-film inverted MSM are analyzed and compared to conventional MSM, that was modeled and simulated using Silvaco TCAD (Technology Computer Aided Design) and ATLAS software. We show how the interdigital spacing and thickness of the InGaAs layer influence the impulse response and the associated bandwidth [2].
- Copyright
- © 2022 The Authors. Published by Atlantis Press International B.V.
- Open Access
- This is an open access article under the CC BY-NC license.
Cite this article
TY - CONF AU - Benzeghda Sabah AU - Bouhadiche Adil AU - Benghorieb Soulef AU - Irma saraswati AU - F Hobar PY - 2022 DA - 2022/02/01 TI - A Comparative Structural, Optical and Electrical Properties of Metal–Semiconductor–Metal Based on Inalas /Ingaas BT - Proceedings of the Conference on Broad Exposure to Science and Technology 2021 (BEST 2021) PB - Atlantis Press SP - 150 EP - 154 SN - 2352-5401 UR - https://doi.org/10.2991/aer.k.220131.025 DO - 10.2991/aer.k.220131.025 ID - Sabah2022 ER -