most citedCharacterization of MKIDs for CMB observation at 220 GHz with the South Pole Telescope

5 citations · 16 across the 6 of their papers we have counts for

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astro-ph.IM2024

A first demonstration of active feedback control and multi-frequency imaging techniques for kinetic inductance detectors

Maclean Rouble, Graeme Smecher, Michel Adamič +6

RF-ICE is a signal processing platform for the readout of large arrays of superconducting resonators. Designed for flexibility, the system's low digital latency and ability to inde…

astro-ph.IM20242 cited

The CRS: a scalable full-stack control system for Microwave Kinetic Inductance Detectors

Joshua Montgomery, Wellington Avelino, Matt Dobbs +4

The t0.technology Control and Readout System (CRS) is a modular microwave control and readout system for mm-wave and radio astronomy, THz imaging, noise radar, and superconducting…

astro-ph.IM20235 cited

RF-ICE: large-scale gigahertz readout of frequency-multiplexed microwave kinetic inductance detectors

M. Rouble, G. Smecher, A. Anderson +5

We present RF-ICE, a novel readout platform for microwave kinetic inductance detectors (MKIDs), optimized for use on millimeter-wavelength telescopes. The RF-ICE system extends ICE…

astro-ph.IM20235 cited

Characterization of MKIDs for CMB observation at 220 GHz with the South Pole Telescope

Karia R. Dibert, Peter S. Barry, Adam J. Anderson +11

We present an updated design of the 220 GHz microwave kinetic inductance detector (MKID) pixel for SPT-3G+, the next-generation camera for the South Pole Telescope. We show results…

astro-ph.IM20232 cited

Noise Optimization for MKIDs with Different Design Geometries and Material Selections

Z. Pan, K. R. Dibert, J. Zhang +13

The separation and optimization of noise components is critical to microwave-kinetic inductance detector (MKID) development. We analyze the effect of several changes to the lumped-…

astro-ph.IM20232 cited

Fabrication Development for SPT-SLIM, a Superconducting Spectrometer for Line Intensity Mapping

T. Cecil, C. Albert, A. J. Anderson +18

Line Intensity Mapping (LIM) is a new observational technique that uses low-resolution observations of line emission to efficiently trace the large-scale structure of the Universe…