Selection rules in symmetry-broken systems by symmetries in synthetic dimensions
arXiv:2106.04301 · doi:10.1038/s41467-022-29080-3
Abstract
Selection rules are often considered a hallmark of symmetry. When a symmetry is broken, e.g., by an external perturbation, the system exhibits selection rule deviations which are often analyzed by perturbation theory. Here, we employ symmetry-breaking degrees of freedom as synthetic dimensions, to demonstrate that symmetry-broken systems systematically exhibit a new class of symmetries and selection rules. These selection rules determine the scaling of a system's observables (to all orders in the strength of the symmetry-breaking perturbation) as it transitions from symmetric to symmetry-broken. We specifically analyze periodically driven (Floquet) systems subject to two driving fields, where the first field imposes a spatio-temporal symmetry, and the second field breaks it, imposing a symmetry in synthetic dimensions. We tabulate the resulting synthetic symmetries for (2+1)D Floquet group symmetries and derive the corresponding selection rules for high harmonic generation (HHG) and above-threshold ionization (ATI). Finally, we observe experimentally HHG selection rules imposed by symmetries in synthetic dimensions. The new class of symmetries & selection rules extends the scope of existing symmetry breaking spectroscopy techniques, opening new routes for ultrafast spectroscopy of phonon-polarization, spin-orbit coupling, and more.
References in corpus (7)
- Spin conservation in high-order-harmonic generation using bicircular fields
- Phonon driven Floquet matter
- Chiral high-harmonic generation and spectroscopy on solid surfaces using polarization-tailored strong fields
- Dynamical symmetries of periodically-driven quantum systems and their spectroscopic signatures
- High-harmonic generation in spin-orbit coupled systems
- Dimensional crossover in a layered ferromagnet detected by spin correlation driven distortions
- Observation of symmetry-protected selection rules in periodically driven quantum systems
Cited by in corpus (4)
- The Application of Tailored Fields for Studying Chirality and Symmetry
- Floquet optical selection rules in black phosphorus
- Noncollinear phase-matching of high harmonic generation in solids
- Time- and angle-resolved photoelectron spectroscopy of strong-field light-dressed solids: prevalence of the adiabatic band picture