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A Thin-Film Pinned-Photodiode Imager Pixel with Fully Monolithic Fabrication and beyond 1Me- Full Well Capacity

Thin-film photodiodes (TFPD) monolithically integrated on the Si Read-Out Integrated Circuitry (ROIC) are promising imaging platforms when beyond-silicon optoelectronic properties are required. Although TFPD device performance has improved significantly, the pixel development has been limited in ter...

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Autores principales: Kim, Joo Hyoung, Berghmans, Francois, Siddik, Abu Bakar, Sutcu, Irem, Monroy, Isabel Pintor, Yu, Jehyeok, Weydts, Tristan, Georgitzikis, Epimitheas, Kang, Jubin, Baines, Yannick, Hermans, Yannick, Chandrasekaran, Naresh, De Roose, Florian, Uytterhoeven, Griet, Puybaret, Renaud, Li, Yunlong, Lieberman, Itai, Karve, Gauri, Cheyns, David, Genoe, Jan, Malinowski, Paweł E., Heremans, Paul, Myny, Kris, Papadopoulos, Nikolas, Lee, Jiwon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10649951/
https://www.ncbi.nlm.nih.gov/pubmed/37960502
http://dx.doi.org/10.3390/s23218803
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author Kim, Joo Hyoung
Berghmans, Francois
Siddik, Abu Bakar
Sutcu, Irem
Monroy, Isabel Pintor
Yu, Jehyeok
Weydts, Tristan
Georgitzikis, Epimitheas
Kang, Jubin
Baines, Yannick
Hermans, Yannick
Chandrasekaran, Naresh
De Roose, Florian
Uytterhoeven, Griet
Puybaret, Renaud
Li, Yunlong
Lieberman, Itai
Karve, Gauri
Cheyns, David
Genoe, Jan
Malinowski, Paweł E.
Heremans, Paul
Myny, Kris
Papadopoulos, Nikolas
Lee, Jiwon
author_facet Kim, Joo Hyoung
Berghmans, Francois
Siddik, Abu Bakar
Sutcu, Irem
Monroy, Isabel Pintor
Yu, Jehyeok
Weydts, Tristan
Georgitzikis, Epimitheas
Kang, Jubin
Baines, Yannick
Hermans, Yannick
Chandrasekaran, Naresh
De Roose, Florian
Uytterhoeven, Griet
Puybaret, Renaud
Li, Yunlong
Lieberman, Itai
Karve, Gauri
Cheyns, David
Genoe, Jan
Malinowski, Paweł E.
Heremans, Paul
Myny, Kris
Papadopoulos, Nikolas
Lee, Jiwon
author_sort Kim, Joo Hyoung
collection PubMed
description Thin-film photodiodes (TFPD) monolithically integrated on the Si Read-Out Integrated Circuitry (ROIC) are promising imaging platforms when beyond-silicon optoelectronic properties are required. Although TFPD device performance has improved significantly, the pixel development has been limited in terms of noise characteristics compared to the Si-based image sensors. Here, a thin-film-based pinned photodiode (TF-PPD) structure is presented, showing reduced kTC noise and dark current, accompanied with a high conversion gain (CG). Indium-gallium-zinc oxide (IGZO) thin-film transistors and quantum dot photodiodes are integrated sequentially on the Si ROIC in a fully monolithic scheme with the introduction of photogate (PG) to achieve PPD operation. This PG brings not only a low noise performance, but also a high full well capacity (FWC) coming from the large capacitance of its metal-oxide-semiconductor (MOS). Hence, the FWC of the pixel is boosted up to 1.37 Me- with a 5 μm pixel pitch, which is 8.3 times larger than the FWC that the TFPD junction capacitor can store. This large FWC, along with the inherent low noise characteristics of the TF-PPD, leads to the three-digit dynamic range (DR) of 100.2 dB. Unlike a Si-based PG pixel, dark current contribution from the depleted semiconductor interfaces is limited, thanks to the wide energy band gap of the IGZO channel material used in this work. We expect that this novel 4 T pixel architecture can accelerate the deployment of monolithic TFPD imaging technology, as it has worked for CMOS Image sensors (CIS).
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spelling pubmed-106499512023-10-29 A Thin-Film Pinned-Photodiode Imager Pixel with Fully Monolithic Fabrication and beyond 1Me- Full Well Capacity Kim, Joo Hyoung Berghmans, Francois Siddik, Abu Bakar Sutcu, Irem Monroy, Isabel Pintor Yu, Jehyeok Weydts, Tristan Georgitzikis, Epimitheas Kang, Jubin Baines, Yannick Hermans, Yannick Chandrasekaran, Naresh De Roose, Florian Uytterhoeven, Griet Puybaret, Renaud Li, Yunlong Lieberman, Itai Karve, Gauri Cheyns, David Genoe, Jan Malinowski, Paweł E. Heremans, Paul Myny, Kris Papadopoulos, Nikolas Lee, Jiwon Sensors (Basel) Communication Thin-film photodiodes (TFPD) monolithically integrated on the Si Read-Out Integrated Circuitry (ROIC) are promising imaging platforms when beyond-silicon optoelectronic properties are required. Although TFPD device performance has improved significantly, the pixel development has been limited in terms of noise characteristics compared to the Si-based image sensors. Here, a thin-film-based pinned photodiode (TF-PPD) structure is presented, showing reduced kTC noise and dark current, accompanied with a high conversion gain (CG). Indium-gallium-zinc oxide (IGZO) thin-film transistors and quantum dot photodiodes are integrated sequentially on the Si ROIC in a fully monolithic scheme with the introduction of photogate (PG) to achieve PPD operation. This PG brings not only a low noise performance, but also a high full well capacity (FWC) coming from the large capacitance of its metal-oxide-semiconductor (MOS). Hence, the FWC of the pixel is boosted up to 1.37 Me- with a 5 μm pixel pitch, which is 8.3 times larger than the FWC that the TFPD junction capacitor can store. This large FWC, along with the inherent low noise characteristics of the TF-PPD, leads to the three-digit dynamic range (DR) of 100.2 dB. Unlike a Si-based PG pixel, dark current contribution from the depleted semiconductor interfaces is limited, thanks to the wide energy band gap of the IGZO channel material used in this work. We expect that this novel 4 T pixel architecture can accelerate the deployment of monolithic TFPD imaging technology, as it has worked for CMOS Image sensors (CIS). MDPI 2023-10-29 /pmc/articles/PMC10649951/ /pubmed/37960502 http://dx.doi.org/10.3390/s23218803 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Kim, Joo Hyoung
Berghmans, Francois
Siddik, Abu Bakar
Sutcu, Irem
Monroy, Isabel Pintor
Yu, Jehyeok
Weydts, Tristan
Georgitzikis, Epimitheas
Kang, Jubin
Baines, Yannick
Hermans, Yannick
Chandrasekaran, Naresh
De Roose, Florian
Uytterhoeven, Griet
Puybaret, Renaud
Li, Yunlong
Lieberman, Itai
Karve, Gauri
Cheyns, David
Genoe, Jan
Malinowski, Paweł E.
Heremans, Paul
Myny, Kris
Papadopoulos, Nikolas
Lee, Jiwon
A Thin-Film Pinned-Photodiode Imager Pixel with Fully Monolithic Fabrication and beyond 1Me- Full Well Capacity
title A Thin-Film Pinned-Photodiode Imager Pixel with Fully Monolithic Fabrication and beyond 1Me- Full Well Capacity
title_full A Thin-Film Pinned-Photodiode Imager Pixel with Fully Monolithic Fabrication and beyond 1Me- Full Well Capacity
title_fullStr A Thin-Film Pinned-Photodiode Imager Pixel with Fully Monolithic Fabrication and beyond 1Me- Full Well Capacity
title_full_unstemmed A Thin-Film Pinned-Photodiode Imager Pixel with Fully Monolithic Fabrication and beyond 1Me- Full Well Capacity
title_short A Thin-Film Pinned-Photodiode Imager Pixel with Fully Monolithic Fabrication and beyond 1Me- Full Well Capacity
title_sort thin-film pinned-photodiode imager pixel with fully monolithic fabrication and beyond 1me- full well capacity
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10649951/
https://www.ncbi.nlm.nih.gov/pubmed/37960502
http://dx.doi.org/10.3390/s23218803
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