The thermally-coupled imager: A scalable readout architecture for superconducting nanowire single photon detectors
arXiv:2112.04705 · doi:10.1063/5.0102154
Abstract
Although superconducting nanowire single-photon detectors (SNSPDs) are a promising technology for quantum optics, metrology, and astronomy, they currently lack a readout architecture that is scalable to the megapixel regime and beyond. In this work, we have designed and demonstrated such an architecture for SNSPDs, called the thermally-coupled imager (TCI). The TCI uses a combination of time-of-flight delay lines and thermal coupling to create a scalable architecture that can scale to large array sizes, allows neighboring detectors to operate independently, and requires only four microwave readout lines to operate no matter the size of the array. We give an overview of how the architecture functions, and demonstrate a proof-of-concept imaging array. The array was able to image a free-space focused spot at 373 nm, count at 9.6 Mcps, and resolve photon location with greater than 99.83\% distinguishability.
References in corpus (5)
- Imaging high-dimensional spatial entanglement with a camera
- A Near-Infrared 64-pixel Superconducting Nanowire Single Photon Detector Array with Integrated Multiplexed Readout
- Single-photon detection in the mid-infrared up to 10 micron wavelength using tungsten silicide superconducting nanowire detectors
- Demonstration of a Thermally-Coupled Row-Column SNSPD Imaging Array
- Demonstration of microwave multiplexed readout of DC biased superconducting nanowire detectors