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Demonstration of a superconducting diode-with-memory, operational at zero magnetic field with switchable nonreciprocity

Physics

Demonstration of a superconducting diode-with-memory, operational at zero magnetic field with switchable nonreciprocity

T. Golod and V. M. Krasnov

Discover groundbreaking prototypes of superconducting diodes that operate at zero magnetic field, developed by Taras Golod and Vladimir M. Krasnov. These innovative diodes demonstrate nonreciprocity and exceptional rectification efficiency, paving the way for future in-memory superconducting computers!

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~3 min • Beginner • English
Abstract
Diode is one of the basic electronic components. It has a nonreciprocal current response, associated with a broken space/time reversal symmetry. Here we demonstrate prototypes of superconducting diodes operational at zero magnetic field. They are based on conventional niobium planar Josephson junctions, in which space/time symmetry is broken by a combination of self-field effect from nonuniform bias and stray fields from a trapped Abrikosov vortex. We demonstrate that nonreciprocity of critical current in such diodes can reach an order of magnitude and rectification efficiency can exceed 70%. Furthermore, we can easily change the diode polarity and switch nonreciprocity on/off by changing the bias configuration and by trapping/removing of a vortex. This facilitates a memory functionality. We argue that such a diode-with-memory can be used for a future generation of in-memory superconducting computers.
Publisher
Nature Communications
Published On
Jun 27, 2022
Authors
Taras Golod, Vladimir M. Krasnov
Tags
superconducting diodes
Josephson junctions
nonreciprocity
critical current
memory functionality
Abrikosov vortex
rectification efficiency
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