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Monolithic 3D Integration With Photosensor and CMOS Circuits Using Ion-Cut Layer Transfer

Title
Monolithic 3D Integration With Photosensor and CMOS Circuits Using Ion-Cut Layer Transfer
Author
최창환
Keywords
Silicon; Performance evaluation; Metals; Substrates; Frequency modulation; Ring oscillators; Integrated circuit interconnections; Monolithic 3D (M3D); hydrogen implantation; photosensor; wafer bonding
Issue Date
2022-03
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Citation
IEEE ELECTRON DEVICE LETTERS, v. 43, NO. 3, Page. 430-433
Abstract
A thin Si layer transfer process for monolithic 3D (M3D) integration is proposed using hydrogen ion (H+) implantation. The upper Si layer was transferred to CMOS circuits fabricated on the lower substrate by H+ implantation, oxide-to-oxide bonding, and a cleavage process at low temperature (< 500 degrees C). The M3D system comprising the photosensor connected to the CMOS device was demonstrated, where the thickness and roughness of the transferred Si layer were determined by H+ implantation and subsequent processes. The hetero-junctional photosensor was fabricated on the transferred Si layer, which generated the photocurrent (I-ph) by light exposure. The photosensor and ring oscillator circuits of the vertical structure implemented by the M3D process generated the I-ph according to the light exposure intensity and showed different frequency behaviors accordingly. Compared with the continuous device scaling approach, M3D may be an alternative scheme for low-power, high-performance, and multi-functional devices.
URI
https://ieeexplore.ieee.org/document/9705514https://repository.hanyang.ac.kr/handle/20.500.11754/178304
ISSN
0741-3106;1558-0563
DOI
10.1109/LED.2022.3149390
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > MATERIALS SCIENCE AND ENGINEERING(신소재공학부) > Articles
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