Kinetic Inductance Detectors for the OLIMPO experiment: design and pre-flight characterization
A. Paiella, A. Coppolecchia, L. Lamagna, P. A. R. Ade, E. S., Battistelli, M. G. Castellano, I. Colantoni, F. Columbro, G. D'Alessandro, P., de Bernardis, S. Gordon, S. Masi, P. Mauskopf, G. Pettinari, F. Piacentini,, G. Pisano, G. Presta, C. Tucker

TL;DR
This paper presents the design, fabrication, and pre-flight characterization of LEKID arrays optimized for the OLIMPO experiment, demonstrating their electrical and optical performance in relevant conditions for space-based SZ effect measurements.
Contribution
It introduces the development and comprehensive pre-flight testing of horn-coupled LEKID arrays for the OLIMPO balloon-borne telescope, validating their suitability for space environment applications.
Findings
Resonator quality factors ranged from 1.0×10^4 to 7.0×10^4 across frequencies.
Electrical phase responsivities were around 1.4 to 2.1 rad/pW.
Optical NETs ranged from 200 to 340 μK√s at 12 Hz.
Abstract
We designed, fabricated, and characterized four arrays of horn--coupled, lumped element kinetic inductance detectors (LEKIDs), optimized to work in the spectral bands of the balloon-borne OLIMPO experiment. OLIMPO is a 2.6 m aperture telescope, aimed at spectroscopic measurements of the Sunyaev-Zel'dovich (SZ) effect. OLIMPO will also validate the LEKID technology in a representative space environment. The corrected focal plane is filled with diffraction limited horn-coupled KID arrays, with 19, 37, 23, 41 active pixels respectively at 150, 250, 350, and 460GHz. Here we report on the full electrical and optical characterization performed on these detector arrays before the flight. In a dark laboratory cryostat, we measured the resonator electrical parameters, such as the quality factors and the electrical responsivities, at a base temperature of 300mK. The measured average…
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