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Orbital Pumping Incorporating Both Orbital Angular Momentum and Position

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arxiv 2311.00362 v3 pith:EKL7NMKP submitted 2023-11-01 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords orbitalangularcurrentsmomentumpumpingspinphononcurrent
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We develop a theory of adiabatic orbital pumping, highlighting qualitative differences from spin pumping. An oscillating magnetic field pumps not only orbital angular momentum current but also orbital angular position current. The latter, which has no spin counterpart, underscores the incompleteness of existing orbital torque theories. Importantly, both types of orbital currents can be detected as transverse electric voltages, which contain considerable second harmonic components unlike in spin pumping. Moreover, orbital currents can be pumped by lattice dynamics that carry phonon angular momentum, implying that orbital currents can, in turn, induce phonon angular momentum. Our work open up new possibilities for generating orbital currents and provides a broader understanding of the interplay between spin, orbital, and phonon dynamics.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Orbital Pumping in Ferrimagnetic Insulators

    cond-mat.mes-hall 2025-06 conditional novelty 7.0 of 10

    Orbital currents are generated directly from magnetization dynamics of the ferrimagnetic insulator BiYIG and detected in naturally oxidized Cu, with spin currents shown to dominate in Cr.

  2. Phenomenology of orbital torque, pumping and mixing conductance in metallic bilayers

    cond-mat.mes-hall 2024-12 conditional novelty 6.0 of 10

    A drift-diffusion model predicts that orbital torque in metallic bilayers scales with the product of orbital injection, orbit-to-spin conversion, and spin backflow efficiencies.

  3. Identification of orbital pumping from spin pumping and rectification effects

    cond-mat.mtrl-sci 2025-02 conditional novelty 5.0 of 10

    Orbital pumping is identified in Nb/Ni bilayers via a voltage sign reversal that cannot be explained by spin pumping alone.

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