The Simulation and Design of an On-Chip Superconducting Millimetre Filter-Bank Spectrometer
arXiv:2111.04632 · doi:10.1007/s10909-022-02747-3
Abstract
Superconducting on-chip filter-banks provide a scalable, space saving solution to create imaging spectrometers at millimetre and sub-millimetre wavelengths. We present an easy to realise, lithographed superconducting filter design with a high tolerance to fabrication error. Using a capacitively coupled microstrip resonator to define a narrow () spectral pass band, the filtered output of a given spectrometer channel directly connects to a Lumped Element Kinetic Inductance Detector (LEKID). We show the tolerance analysis of our design, demonstrating change in filter quality factor to any one realistic fabrication errors and a full filter-bank efficiency forecast to be 60\% after accounting for fabrication errors and dielectric loss tangent.
8 pages, 5 figures. Pre-print for proceedings for the Journal of Low Temperature Physics, 19th Low Temperature Detectors Conference (LTD19)