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Chiral Vortical Effect For An Arbitrary Spin

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

The spin Hall effect of light attracted enormous attention in the literature due to the ongoing progress in developing of new optically active materials and metamaterials with non-trivial spin-orbit interaction. Recently, it was shown that rotating fermionic systems with relativistic massless spectrum may exhibit a 3d analogue of the spin Hall current -- the chiral vortical effect (CVE). Here we show that CVE is a general feature of massless particles with an arbitrary spin. We derive the semi-classical equations of motion in rotating frame from the first principles and show how by coordinate transformation in the phase space it can be brought to the intuitive form proposed in [1]. Our finding clarifies the superficial discrepancies in different formulations of the chiral kinetic theory for rotating systems. We then generalize the chiral kinetic theory, originally introduced for fermions, to an arbitrary spin and study chirality current in a general rotating chiral medium. We stress that the higher-spin realizations of CVE can be in principle observed in various setups including table-top experiments on quantum optics.

years

2026 2

representative citing papers

Anomaly Realization in Charge-Flux Detector Correlators

hep-ph · 2026-07-07 · conditional · novelty 7.0

Axial anomalies realize in flux detectors as massless-limit collapse of angular distributions onto beam-collinear deltas while preserving the integrated anomaly sum rule, with the same mechanism for zilch and mixed gravitational channels.

citing papers explorer

Showing 2 of 2 citing papers.

  • Anomaly Realization in Charge-Flux Detector Correlators hep-ph · 2026-07-07 · conditional · none · ref 53 · internal anchor

    Axial anomalies realize in flux detectors as massless-limit collapse of angular distributions onto beam-collinear deltas while preserving the integrated anomaly sum rule, with the same mechanism for zilch and mixed gravitational channels.

  • Spin Hall effect and Berry curvature of gravitons from quantum field theory hep-th · 2026-05-19 · unverdicted · none · ref 27 · internal anchor

    Gravitons show a helicity-dependent spin Hall effect from Berry curvature, producing an energy Hall current splitting exactly twice as large as the photon case.