MKID development for SuperSpec: an on-chip, mm-wave, filter-bank spectrometer
arXiv:1211.1652 · doi:10.1117/12.927070
Abstract
SuperSpec is an ultra-compact spectrometer-on-a-chip for millimeter and submillimeter wavelength astronomy. Its very small size, wide spectral bandwidth, and highly multiplexed readout will enable construction of powerful multibeam spectrometers for high-redshift observations. The spectrometer consists of a horn-coupled microstrip feedline, a bank of narrow-band superconducting resonator filters that provide spectral selectivity, and Kinetic Inductance Detectors (KIDs) that detect the power admitted by each filter resonator. The design is realized using thin-film lithographic structures on a silicon wafer. The mm-wave microstrip feedline and spectral filters of the first prototype are designed to operate in the band from 195-310 GHz and are fabricated from niobium with at Tc of 9.2K. The KIDs are designed to operate at hundreds of MHz and are fabricated from titanium nitride with a Tc of 2K. Radiation incident on the horn travels along the mm-wave microstrip, passes through the frequency-selective filter, and is finally absorbed by the corresponding KID where it causes a measurable shift in the resonant frequency. In this proceedings, we present the design of the KIDs employed in SuperSpec and the results of initial laboratory testing of a prototype device. We will also briefly describe the ongoing development of a demonstration instrument that will consist of two 500-channel, R=700 spectrometers, one operating in the 1-mm atmospheric window and the other covering the 650 and 850 micron bands.
As submitted, except that "in prep" references have been updated
References in corpus (5)
- Titanium Nitride Films for Ultrasensitive Microresonator Detectors
- Crosstalk Reduction for Superconducting Microwave Resonator Arrays
- Two-level system noise reduction for Microwave Kinetic Inductance Detectors
- Integrated Filterbank for DESHIMA: A Submillimeter Imaging Spectrograph Based on Superconducting Resonators
- SuperSpec: design concept and circuit simulations
Cited by in corpus (25)
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- Review: Far-Infrared Instrumentation and Technology Development for the Next Decade
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- The Atacama Large Aperture Submillimetre Telescope (AtLAST)
- First light demonstration of the integrated superconducting spectrometer
- Applications for Microwave Kinetic Induction Detectors in Advanced Instrumentation
- Neutrino Properties with Ground-Based Millimeter-Wavelength Line Intensity Mapping
- SPT-SLIM: A Line Intensity Mapping Pathfinder for the South Pole Telescope
- Wideband on-chip terahertz spectrometer based on a superconducting filterbank
- SuperSpec: design concept and circuit simulations
- Full-Array Noise Performance of Deployment-Grade SuperSpec mm-wave On-Chip Spectrometers
- Terahertz Band-Pass Filters for Wideband Superconducting On-chip Filter-bank Spectrometers
- Suppression of radiation loss in high kinetic inductance superconducting co-planar waveguides
- Electrothermal Model of Kinetic Inductance Detectors
- Delensing Degree-Scale -Mode Polarization with High-Redshift Line Intensity Mapping
- Low-loss Millimeter-wave Resonators with an Improved Coupling Structure
- A Forecast for Large Scale Structure Constraints on Horndeski Gravity with Line Intensity Mapping
- DESHIMA 2.0: Rapid redshift surveys and multi-line spectroscopy of dusty galaxies
- A four-pole power-combiner design for far-infrared and submillimeter spectroscopy
- Fabrication of antenna-coupled KID array for Cosmic Microwave Background detection
- On the Homogeneity of TiN Kinetic Inductance Detectors Produced through Atomic Layer Deposition
- The Simulation and Design of an On-Chip Superconducting Millimetre Filter-Bank Spectrometer
- Interplay between phonon downconversion efficiency, density of states at Fermi energy, and intrinsic energy resolution for microwave kinectic inductance detectors
- Quasiparticle Generation-Recombination Noise in the Limit of Low Detector Volume
- Noise Optimization for MKIDs with Different Design Geometries and Material Selections