Design and performance of the antenna coupled lumped-element kinetic inductance detector
arXiv:1801.06265 · doi:10.1007/s10909-018-1943-y
Abstract
Focal plane arrays consisting of low-noise, polarisation-sensitive detectors have made possible the pioneering advances in the study of the cosmic microwave background (CMB). To make further progress, the next generation of CMB experiments (e.g. CMB-S4) will require a substantial increase in the number of detectors compared to the current stage 3 instruments. Arrays of kinetic inductance detectors (KIDs) provide a possible path to realising such large format arrays owing to their intrinsic multiplexing advantage and relative cryogenic simplicity. In this proceedings, we report on the design of a novel variant of the traditional KID design; the antenna-coupled lumped-element KID. A polarisation sensitive twin-slot antenna placed behind an optimised hemispherical lens couples power onto a thin-film superconducting microstrip line. The power is then guided into the inductive section of an aluminium KID where it is absorbed and modifies both the resonant frequency and quality factor of the KID. We present the various aspects of the design and preliminary results from the first set of seven-element prototype arrays and compare to the expected modelled performance.
References in corpus (6)
- The Atacama Cosmology Telescope: The polarization-sensitive ACTPol instrument
- The NIKA2 instrument, a dual-band kilopixel KID array for millimetric astronomy
- BICEP3: a 95 GHz refracting telescope for degree-scale CMB polarization
- The Next Generation BLAST Experiment
- An Open Source, FPGA-based LeKID readout for BLAST-TNG: Pre-flight Results
- Equivalence of Optical and Electrical Noise Equivalent Power of Hybrid NbTiN-Al Microwave Kinetic Inductance Detectors
Cited by in corpus (4)
- Development of Aluminum LEKIDs for Balloon-Borne Far-IR Spectroscopy
- A Scalable Cryogenic LED Module for Selectively Illuminating Kinetic Inductance Detector Arrays
- Reducing the susceptibility of lumped-element KIDs to two-level system effects
- Fabrication of antenna-coupled KID array for Cosmic Microwave Background detection