DOE OSTI · 2202277
A superconducting nanowire binary shift register
Abstract
We present a design for a superconducting nanowire binary shift register, which stores digital states in the form of circulating supercurrents in high-kinetic-inductance loops. Adjacent superconducting loops are connected with nanocryotrons, three-terminal electrothermal switches, and fed with an alternating two-phase clock to synchronously transfer the digital state between the loops. A two-loop serial-input shift register was fabricated with thin-film NbN and a bit error rate of less than 10 –4 was achieved, when operated at a maximum clock frequency of 83 MHz and in an out-of-plane magnetic field of up to 6 mT. A shift register based on this technology offers an integrated solution for low-power readout of superconducting nanowire single photon detector arrays and is capable of interfacing directly with room-temperature electronics and operating unshielded in high magnetic field environments.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Foster, Reed A., Castellani, Matteo, Buzzi, Alessandro, Medeiros, Owen, Colangelo, Marco, Berggren, Karl K.. 2023-04-10. A superconducting nanowire binary shift register. https://doi.org/10.1063/5.0144685
Cite the original work for its findings. Save a collection to share your selection of sources.