A multi-channel silicon package for large-scale skipper-CCD experiments

Fuente: arXiv
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Autori principali: Botti, A. M., Chavez, C., Sofo-Haro, M., Miller, C. S., Chierchie, F., Jonas, M., Lisovenko, M., Gutti, H., Czaplewski, D., Lathrop, A., Tiffenberg, J., Fernandez-Moroni, G., Estrada, J.
Natura: Preprint
Pubblicazione: 2024
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author Botti, A. M.
Chavez, C.
Sofo-Haro, M.
Miller, C. S.
Chierchie, F.
Jonas, M.
Lisovenko, M.
Gutti, H.
Czaplewski, D.
Lathrop, A.
Tiffenberg, J.
Fernandez-Moroni, G.
Estrada, J.
author_facet Botti, A. M.
Chavez, C.
Sofo-Haro, M.
Miller, C. S.
Chierchie, F.
Jonas, M.
Lisovenko, M.
Gutti, H.
Czaplewski, D.
Lathrop, A.
Tiffenberg, J.
Fernandez-Moroni, G.
Estrada, J.
contents The next generation of experiments for rare-event searches based on skipper Charge Coupled Devices (skipper-CCDs) presents new challenges for the sensor packaging and readout. Scaling the active mass and simultaneously reducing the experimental backgrounds in orders of magnitude requires a novel high-density silicon-based package that must be massively produced and tested. In this work, we present the design, fabrication, testing, and empirical signal model of a multi-channel silicon package. In addition, we outline the chosen specifications for the ongoing production of 1500 wafers that will add up to a 10 kg skipper-CCD array with 24000 readout channels.
format Preprint
id arxiv_https___arxiv_org_abs_2410_06417
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A multi-channel silicon package for large-scale skipper-CCD experiments
Botti, A. M.
Chavez, C.
Sofo-Haro, M.
Miller, C. S.
Chierchie, F.
Jonas, M.
Lisovenko, M.
Gutti, H.
Czaplewski, D.
Lathrop, A.
Tiffenberg, J.
Fernandez-Moroni, G.
Estrada, J.
Instrumentation and Methods for Astrophysics
Instrumentation and Detectors
The next generation of experiments for rare-event searches based on skipper Charge Coupled Devices (skipper-CCDs) presents new challenges for the sensor packaging and readout. Scaling the active mass and simultaneously reducing the experimental backgrounds in orders of magnitude requires a novel high-density silicon-based package that must be massively produced and tested. In this work, we present the design, fabrication, testing, and empirical signal model of a multi-channel silicon package. In addition, we outline the chosen specifications for the ongoing production of 1500 wafers that will add up to a 10 kg skipper-CCD array with 24000 readout channels.
title A multi-channel silicon package for large-scale skipper-CCD experiments
topic Instrumentation and Methods for Astrophysics
Instrumentation and Detectors
url https://arxiv.org/abs/2410.06417