Enantio-detection of cyclic three-level chiral molecules in a driven cavity
arXiv:2111.06028 · doi:10.1103/PhysRevResearch.4.013100
Abstract
We propose an enantio-detection method of chiral molecules in a cavity with external drive. The chiral molecules are coupled with a quantized cavity field and two classical light fields to form the cyclic three-level systems. The chirality-dependent cavity-assisted three-photon process in the three-level systems leads to the generation of intracavity photons. Simultaneously, the drive field also results in the chirality-independent process of the generation of intracavity photons. Based on the interference between the intracavity photons generated from these two processes, one can detect the enantiomeric excess of chiral mixture via monitoring the transmission rate of the drive field.
8 pages, 5 figures
References in corpus (10)
- Enantiomer-Specific State Transfer of Chiral Molecules
- Generalized Stern-Gerlach Effect for Chiral Molecules
- Optically-Induced Highly-Efficient Detection and Separation of Chiral Molecules through Shortcuts to Adiabaticity
- Principles of enantio-selective excitation in three-wave mixing spectroscopy of chiral molecules
- Dynamic method to distinguish between left- and right-handed chiral molecules
- Effect of molecular rotation on enantioseparation
- Collective strong coupling of cold potassium atoms in a ring cavity
- Entanglement-Assisted Quantum Chiral Spectroscopy
- Proposal for Chiral Detection by the AC Stark-Effect
- Stark Field Modulated Microwave Detection of Molecular Chirality
Cited by in corpus (8)
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- Collective dynamics of the unbalanced three-level Dicke model
- Enantiodiscrimination of chiral molecules via quantum correlation function
- Enantio-specific state transfer of chiral molecules through enantio-selective shortcut-to-adiabaticity paths
- Enantiomer detection via Quantum Otto cycle
- Enantiomer-Specific Pumping of Chiral Molecules
- Optical-pumping enantio-conversion of chiral mixtures in presence of tunneling between chiral states
- Enantiospecific Two-Photon Electric-Dipole Selection Rule of Chiral Molecules