Chung-Ang University Scientist Develops New Antiferromagnetic Superconducting Spin Valves
In response to these challenges, researchers have engineered spin-triplet superconducting valves capable of switching superconducting currents on and off as per the need. These valves require only a modest external magnetic field to actively manipulate the behavior of spin-triplet Cooper pairs. However, they are fabricated from ferromagnetic Josephson junctions (JJs) consisting of a thin layer of the non-superconducting material sandwiched between superconductors. They require complex and delicate engineering to prevent interference from stray magnetic fields.
To make the fabrication of spin-triplet superconducting valves easier, a team of researchers led by Assistant Professor
Emphasizing the importance of this study,
Fundamentally, the control of the spin-triplet Cooper pairs in antiferromagnetic materials hinges on the Berry curvature, a fundamental property of materials which indicates how the energy levels of electrons respond to an external magnetic field. The researchers modified the Berry curvature of Mn3Ge to produce "fictitious magnetic fields," enabling precise control of supercurrents with minimal energy input.
They theoretically verified the observed supercurrent behavior of the antiferromagnetic spin valve and leveraged it to fabricate a superconducting quantum interference device (SQUID), a sensitive magnetometer used to measure extremely subtle magnetic fields. These devices are used in a wide range of fields, including medical imaging, geophysics, and materials characterization. The functionality of the SQUID demonstrates the potential of antiferromagnetic spin valves in the realm of superconducting spintronics.
The present findings not only enhance our understanding of the role of Berry curvature in singlet-to-triplet pair conversion but also inspire future theoretical investigations into the intricate interplay between Berry curvature and spin-triplet pairing.
Reference
Title of original paper: Chiral antiferromagnetic Josephson junctions as spin-triplet supercurrent spin valves and d.c. SQUIDs
Journal: Nature Nanotechnology
DOI: https://doi.org/10.1038/s41565-023-01336-z
About Chung-Ang University
Website: https://neweng.cau.ac.kr/index.do
About Dr.
Website: https://scholarworks.bwise.kr/cau/researcher-profile?ep=1387
Contact:
[email protected]
02-820-6614
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SOURCE Chung-Ang University
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