In this paper, we present a new rectifying device, compatible with the technology of CMOS image sensors, suitable for implementing a direct-conversion detector operating at room temperature for operation at up to terahertz frequencies. The rectifying device can be obtained by introducing some simple modifications of the charge-storage well in conventional CMOS integrated circuits, making the proposed solution easy to integrate with the existing imaging systems. The rectifying device is combined with the different elements of the detector, composed of a 3D high-performance antenna and a charge-storage well. In particular, its position just below the edge of the 3D antenna takes maximum advantage of the high electric field concentrated by the antenna itself. In addition, the proposed structure ensures the integrity of the charge-storage well of the detector. In the structure, it is not necessary to use very scaled and costly technological nodes, since the CMOS transistor only provides the necessary integrated readout electronics. On-wafer measurements of RF characteristics of the designed junction are reported and discussed. The overall performances of the entire detector in terms of noise equivalent power (NEP) are evaluated by combining low-frequency measurements of the rectifier with numerical simulations of the 3D antenna and the semiconductor structure at 1 THz, allowing prediction of the achievable NEP.

CMOS-Compatible Room-Temperature Rectifier Toward Terahertz Radiation Detection / Varlamava, Volha; De Amicis, Giovanni; Del Monte, Andrea; Perticaroli, Stefano; Rao, Rosario; Palma, Fabrizio. - In: JOURNAL OF INFRARED, MILLIMETER, AND TERAHERTZ WAVES. - ISSN 1866-6892. - STAMPA. - 37:8(2016), pp. 737-752. [10.1007/s10762-016-0265-x]

CMOS-Compatible Room-Temperature Rectifier Toward Terahertz Radiation Detection

Varlamava, Volha
Membro del Collaboration Group
;
Perticaroli, Stefano
Membro del Collaboration Group
;
Rao, Rosario
Membro del Collaboration Group
;
Palma, Fabrizio
Membro del Collaboration Group
2016

Abstract

In this paper, we present a new rectifying device, compatible with the technology of CMOS image sensors, suitable for implementing a direct-conversion detector operating at room temperature for operation at up to terahertz frequencies. The rectifying device can be obtained by introducing some simple modifications of the charge-storage well in conventional CMOS integrated circuits, making the proposed solution easy to integrate with the existing imaging systems. The rectifying device is combined with the different elements of the detector, composed of a 3D high-performance antenna and a charge-storage well. In particular, its position just below the edge of the 3D antenna takes maximum advantage of the high electric field concentrated by the antenna itself. In addition, the proposed structure ensures the integrity of the charge-storage well of the detector. In the structure, it is not necessary to use very scaled and costly technological nodes, since the CMOS transistor only provides the necessary integrated readout electronics. On-wafer measurements of RF characteristics of the designed junction are reported and discussed. The overall performances of the entire detector in terms of noise equivalent power (NEP) are evaluated by combining low-frequency measurements of the rectifier with numerical simulations of the 3D antenna and the semiconductor structure at 1 THz, allowing prediction of the achievable NEP.
2016
Direct terahertz detection; Image detector; Rectifying antenna (rectenna); Room-temperature detector; Terahertz; Zero-bias detector; Radiation; Instrumentation; Condensed Matter Physics; Electrical and Electronic Engineering
01 Pubblicazione su rivista::01a Articolo in rivista
CMOS-Compatible Room-Temperature Rectifier Toward Terahertz Radiation Detection / Varlamava, Volha; De Amicis, Giovanni; Del Monte, Andrea; Perticaroli, Stefano; Rao, Rosario; Palma, Fabrizio. - In: JOURNAL OF INFRARED, MILLIMETER, AND TERAHERTZ WAVES. - ISSN 1866-6892. - STAMPA. - 37:8(2016), pp. 737-752. [10.1007/s10762-016-0265-x]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1114225
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