Kampfrath Lab

Free University of Berlin

Berlin (DE3) · Germany

ERC-funded
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ERC Advanced Grant · 2023

Advancing orbitronics by pushing electron orbital angular momentum to terahertz speed

The spin angular momentum (S) of the electron has significantly extended conventional electronics, which relies on the electron charge (C), by new, so-called spintronic functionalities. Examples include magnetization switching, the transport of S and its detection, even down to femtosecond time scales. To boost the efficiency of spintronics, the so far neglected yet equally fascinating and important orbital angular momentum (L) of electrons is considered to be a powerful pathway. Orbitronic phenomena such as L-based transport, torques and magneto-optic effects have much larger magnitude than their S counterparts and may, thus, efficiently complement or even replace spintronic…

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