Non-Hermitian Floquet dynamics in absorption spectroscopy
arXiv:2406.16559 · doi:10.1098/rspa.2024.0484
Abstract
A theory of the absorption of a laser field by an atomic or condensed matter medium is presented for the case where the medium is also interacting with a strong electromagnetic field. The rotating wave approximation is not assumed for the latter. It is shown that in the weak probe limit the Lindblad master equation reduces to a smaller system of linear equations for the relevant steady state coherences. In this limit, the complex susceptibility of the medium can be expressed in terms of individual contributions of decaying dressed states, the latter being eigenstates of a non-Hermitian Floquet Hamiltonian.
References in corpus (22)
- Floquet Engineering of Quantum Materials
- The Kerr-Cat Qubit: Stabilization, Readout, and Gates
- Floquet engineering with quasienergy bands of periodically driven optical lattices
- Tailoring quantum gases by Floquet engineering
- ElecSus: A program to calculate the electric susceptibility of an atomic ensemble
- Giant modulation of optical nonlinearity by Floquet engineering
- Theoretical methods for ultrastrong light-matter interactions
- A quantum transducer using a parametric driven-dissipative phase transition
- Atom-based radio-frequency field calibration and polarization measurement using cesium Floquet states
- Radio-frequency-modulated Rydberg states in a vapor cell
- Non-Hermitian Floquet Topological Matter -- A Review
- Floquet Engineering to Overcome No-Go Theorem of Noisy Quantum Metrology
- Floquet engineering Hz-Level Rabi Spectra in Shallow Optical Lattice Clock
- Optical absorption properties of laser-dressed matter
- Generating Synthetic Magnetism via Floquet Engineering Auxiliary Qubits in Phonon-Cavity-Based Lattice
- Detection of HF and VHF Fields through Floquet Sideband Gaps by `Rabi Matching' Dressed Rydberg Atoms
- Periodically Driven Open Quantum Systems: Spectral Properties and Non-Equilibrium Steady States
- Floquet expansion by counting pump photons
- Generating soliton trains through Floquet engineering
- CoOMBE: A suite of open-source programs for the integration of the optical Bloch equations and Maxwell-Bloch equations
- Spectral characteristics of a modified inverted-Y system beyond rotating wave approximation
- Sidebands shifts and induced sidebands in rf-dressed Rydberg systems