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A Low-Noise X-ray Astronomical Silicon-On-Insulator Pixel Detector Using a Pinned Depleted Diode Structure

This paper presents a novel full-depletion Si X-ray detector based on silicon-on-insulator pixel (SOIPIX) technology using a pinned depleted diode structure, named the SOIPIX-PDD. The SOIPIX-PDD greatly reduces stray capacitance at the charge sensing node, the dark current of the detector, and capac...

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Autores principales: Kamehama, Hiroki, Kawahito, Shoji, Shrestha, Sumeet, Nakanishi, Syunta, Yasutomi, Keita, Takeda, Ayaki, Tsuru, Takeshi Go, Arai, Yasuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5795930/
https://www.ncbi.nlm.nih.gov/pubmed/29295523
http://dx.doi.org/10.3390/s18010027
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author Kamehama, Hiroki
Kawahito, Shoji
Shrestha, Sumeet
Nakanishi, Syunta
Yasutomi, Keita
Takeda, Ayaki
Tsuru, Takeshi Go
Arai, Yasuo
author_facet Kamehama, Hiroki
Kawahito, Shoji
Shrestha, Sumeet
Nakanishi, Syunta
Yasutomi, Keita
Takeda, Ayaki
Tsuru, Takeshi Go
Arai, Yasuo
author_sort Kamehama, Hiroki
collection PubMed
description This paper presents a novel full-depletion Si X-ray detector based on silicon-on-insulator pixel (SOIPIX) technology using a pinned depleted diode structure, named the SOIPIX-PDD. The SOIPIX-PDD greatly reduces stray capacitance at the charge sensing node, the dark current of the detector, and capacitive coupling between the sensing node and SOI circuits. These features of the SOIPIX-PDD lead to low read noise, resulting high X-ray energy resolution and stable operation of the pixel. The back-gate surface pinning structure using neutralized p-well at the back-gate surface and depleted n-well underneath the p-well for all the pixel area other than the charge sensing node is also essential for preventing hole injection from the p-well by making the potential barrier to hole, reducing dark current from the Si-SiO(2) interface and creating lateral drift field to gather signal electrons in the pixel area into the small charge sensing node. A prototype chip using 0.2 μm SOI technology shows very low readout noise of 11.0 e(−)(rms), low dark current density of 56 pA/cm(2) at −35 °C and the energy resolution of 200 eV(FWHM) at 5.9 keV and 280 eV (FWHM) at 13.95 keV.
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spelling pubmed-57959302018-02-13 A Low-Noise X-ray Astronomical Silicon-On-Insulator Pixel Detector Using a Pinned Depleted Diode Structure Kamehama, Hiroki Kawahito, Shoji Shrestha, Sumeet Nakanishi, Syunta Yasutomi, Keita Takeda, Ayaki Tsuru, Takeshi Go Arai, Yasuo Sensors (Basel) Article This paper presents a novel full-depletion Si X-ray detector based on silicon-on-insulator pixel (SOIPIX) technology using a pinned depleted diode structure, named the SOIPIX-PDD. The SOIPIX-PDD greatly reduces stray capacitance at the charge sensing node, the dark current of the detector, and capacitive coupling between the sensing node and SOI circuits. These features of the SOIPIX-PDD lead to low read noise, resulting high X-ray energy resolution and stable operation of the pixel. The back-gate surface pinning structure using neutralized p-well at the back-gate surface and depleted n-well underneath the p-well for all the pixel area other than the charge sensing node is also essential for preventing hole injection from the p-well by making the potential barrier to hole, reducing dark current from the Si-SiO(2) interface and creating lateral drift field to gather signal electrons in the pixel area into the small charge sensing node. A prototype chip using 0.2 μm SOI technology shows very low readout noise of 11.0 e(−)(rms), low dark current density of 56 pA/cm(2) at −35 °C and the energy resolution of 200 eV(FWHM) at 5.9 keV and 280 eV (FWHM) at 13.95 keV. MDPI 2017-12-23 /pmc/articles/PMC5795930/ /pubmed/29295523 http://dx.doi.org/10.3390/s18010027 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kamehama, Hiroki
Kawahito, Shoji
Shrestha, Sumeet
Nakanishi, Syunta
Yasutomi, Keita
Takeda, Ayaki
Tsuru, Takeshi Go
Arai, Yasuo
A Low-Noise X-ray Astronomical Silicon-On-Insulator Pixel Detector Using a Pinned Depleted Diode Structure
title A Low-Noise X-ray Astronomical Silicon-On-Insulator Pixel Detector Using a Pinned Depleted Diode Structure
title_full A Low-Noise X-ray Astronomical Silicon-On-Insulator Pixel Detector Using a Pinned Depleted Diode Structure
title_fullStr A Low-Noise X-ray Astronomical Silicon-On-Insulator Pixel Detector Using a Pinned Depleted Diode Structure
title_full_unstemmed A Low-Noise X-ray Astronomical Silicon-On-Insulator Pixel Detector Using a Pinned Depleted Diode Structure
title_short A Low-Noise X-ray Astronomical Silicon-On-Insulator Pixel Detector Using a Pinned Depleted Diode Structure
title_sort low-noise x-ray astronomical silicon-on-insulator pixel detector using a pinned depleted diode structure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5795930/
https://www.ncbi.nlm.nih.gov/pubmed/29295523
http://dx.doi.org/10.3390/s18010027
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