High-frequency approximation for periodically driven quantum systems from a Floquet-space perspective
Max Planck Institute for the Physics of Complex Systems · Vilnius University
Abstract
We derive a systematic high-frequency expansion for the effective Hamiltonian and the micromotion operator of periodically driven quantum systems. Our approach is based on the block diagonalization of the quasienergy operator in the extended Floquet Hilbert space by means of degenerate perturbation theory. The final results are equivalent to those obtained within a different approach [Phys.\ Rev.\ A {\bf 68}, 013820 (2003), Phys.\ Rev.\ X {\bf 4}, 031027 (2014)] and can also be related to the Floquet-Magnus expansion [J.\ Phys.\ A {\bf 34}, 3379 (2000)]. We discuss that the dependence on the driving phase, which plagues the latter, can lead to artifactual symmetry breaking. The high-frequency approach is…
Citation impact
- FWCI
- 29.18
- Percentile
- 100%
- References
- 105
Authors
2Topics & keywords
- Physics
- Floquet theory
- Degenerate energy levels
- Hamiltonian (control theory)
- Hilbert space
- Quantum mechanics
- Phase space
- Perturbation theory (quantum mechanics)