Raw output waveforms from AC characterization data of nanowire cryotrons. The tested nanowire cryotrons consisted of devices with a 300 nm wide channel, and a choke width varying from 15 nm to 40 nm. The choke offset from the center of the channel was also varied from 0 um to 3 um.

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[1] Alejandro Simon, Reed Foster, Owen Medeiros, Matteo Castellani, Emma Batson, Karl Berggren, "Nanowire cryotron characterization", IEEE Dataport, 2024. [Online]. Available: http://dx.doi.org/10.21227/7kax-0975. Accessed: Mar. 16, 2025.
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doi = {10.21227/7kax-0975},
url = {http://dx.doi.org/10.21227/7kax-0975},
author = {Alejandro Simon; Reed Foster; Owen Medeiros; Matteo Castellani; Emma Batson; Karl Berggren },
publisher = {IEEE Dataport},
title = {Nanowire cryotron characterization},
year = {2024} }
TY - DATA
T1 - Nanowire cryotron characterization
AU - Alejandro Simon; Reed Foster; Owen Medeiros; Matteo Castellani; Emma Batson; Karl Berggren
PY - 2024
PB - IEEE Dataport
UR - 10.21227/7kax-0975
ER -
Alejandro Simon, Reed Foster, Owen Medeiros, Matteo Castellani, Emma Batson, Karl Berggren. (2024). Nanowire cryotron characterization. IEEE Dataport. http://dx.doi.org/10.21227/7kax-0975
Alejandro Simon, Reed Foster, Owen Medeiros, Matteo Castellani, Emma Batson, Karl Berggren, 2024. Nanowire cryotron characterization. Available at: http://dx.doi.org/10.21227/7kax-0975.
Alejandro Simon, Reed Foster, Owen Medeiros, Matteo Castellani, Emma Batson, Karl Berggren. (2024). "Nanowire cryotron characterization." Web.
1. Alejandro Simon, Reed Foster, Owen Medeiros, Matteo Castellani, Emma Batson, Karl Berggren. Nanowire cryotron characterization [Internet]. IEEE Dataport; 2024. Available from : http://dx.doi.org/10.21227/7kax-0975
Alejandro Simon, Reed Foster, Owen Medeiros, Matteo Castellani, Emma Batson, Karl Berggren. "Nanowire cryotron characterization." doi: 10.21227/7kax-0975