activity
20182020
most citedA compact and tunable forward coupler based on high-impedance superconducting nanowires

11 citations · 16 across the 3 of their papers we have counts for

collaborators

5 papers

physics.app-ph202011 cited

A compact and tunable forward coupler based on high-impedance superconducting nanowires

Marco Colangelo, Di Zhu, Daniel F. Santavicca +3

Developing compact, low-dissipation, cryogenic-compatible microwave electronics is essential for scaling up low-temperature quantum computing systems. In this paper, we demonstrate…

physics.ins-det20195 cited

Single-Photon Single-Flux Coupled Detectors

Murat Onen, Marco Turchetti, Brenden A. Butters +3

In this work, we present a novel device that is a combination of a superconducting nanowire single-photon detector and a superconducting multi-level memory. We show that these devi…

cs.ET2019

Design and Characterization of Superconducting Nanowire-Based Processors for Acceleration of Deep Neural Network Training

Murat Onen, Brenden A. Butters, Emily Toomey +2

Training of deep neural networks (DNNs) is a computationally intensive task and requires massive volumes of data transfer. Performing these operations with the conventional von Neu…

physics.app-ph2019

Cryogenic Memory Architecture Integrating Spin Hall Effect based Magnetic Memory and Superconductive Cryotron Devices

Minh-Hai Nguyen, Guilhem J. Ribeill, Martin Gustafsson +19

One of the most challenging obstacles to realizing exascale computing is minimizing the energy consumption of L2 cache, main memory, and interconnects to that memory. For promising…

physics.app-ph2018

Bridging the gap between nanowires and Josephson junctions: a superconducting device based on controlled fluxon transfer across nanowires

Emily Toomey, Murat Onen, Marco Colangelo +3

The basis for superconducting electronics can broadly be divided between two technologies: the Josephson junction and the superconducting nanowire. While the Josephson junction (JJ…