Coherent wave-packet evolution in coupled bands
Dimitrie Culcer, Yugui Yao, Qian Niu

TL;DR
This paper develops a formalism for coherent wave-packet dynamics in coupled bands, incorporating non-Abelian Berry curvature effects, and demonstrates applications in spin separation and magnetic precession.
Contribution
It generalizes semiclassical wave-packet theory to multiple bands with non-Abelian corrections, enabling analysis of spin and charge dynamics in complex band structures.
Findings
Demonstrates spin separation under electric fields.
Recovers Larmor precession in magnetic fields.
Calculates wave-packet magnetic moments in light holes.
Abstract
We develop a formalism for treating coherent wave-packet dynamics of charge and spin carriers in degenerate and nearly degenerate bands. We consider the two-band case carefully in view of spintronics applications, where transitions between spin-split bands often occur even for relatively weak electromagnetic fields. We demonstrate that much of the semiclassical formalism developed for the single-band case can be generalized to multiple bands, and examine the nontrivial non-Abelian corrections arising from the additional degree of freedom. Along with the center of mass motion in crystal momentum and real space, one must also include a pseudo-spin to characterize the dynamics between the bands. We derive the wave packet energy up to the first order gradient correction and obtain the equations of motion for the real- and -space center of the wave-packet, as well as for the pseudo-spin.…
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