Entangled Two-Photon Absorption in Cesium Atoms and the Limitations of the Far-Off-Resonance Approximation
arXiv:2606.01318 · doi:10.1103/8m3x-y9pw
Abstract
The discrepancies between theoretical and experimental results in the process of entangled two-photon absorption (ETPA) are not fully understood. Atomic systems are a promising alternative for investigating this process without the systematic effects present in molecules. We present a theoretical study of the ETPA process in cesium atoms, focusing on the 6S1/2 --> 8S1/2 transition. The ETPA cross section is evaluated both with and without the far-off-resonance (FOR) approximation, including the contributions from intermediate atomic states and decoherence effects. The quantum state of light considered is described by the joint spectral amplitude of photon-pairs produced by the spontaneous parametric down-conversion process. When the FOR approximation is applied, the enhancement factor is constant (36*pi). In contrast, without this approximation the enhancement factor oscillates with the entanglement time, and achieves a maximum value of ~500. These results show the limitations of approximations when calculating the ETPA cross section and contribute to the understanding of the discrepancies between theoretical and experimental values for the ETPA cross section in different samples. The numbers presented in this work can be a starting point for designing experiments aimed at measuring ETPA cross sections in alkali atoms.
Submitted to Physical Review A, 24 pages, 7 figures
References in corpus (9)
- Theory of Two-Photon Interactions with Broadband Down-Converted Light and Entangled Photons
- Setting bounds on two-photon absorption cross-sections in common fluorophores with entangled photon pair excitation
- Energy-Time Entangled Two-Photon Molecular Absorption
- Entangled Two-Photon Absorption by Atoms and Molecules: A Quantum Optics Tutorial
- Quantifying the enhancement of two-photon absorption due to spectral-temporal entanglement
- Single Photon Scattering Can Account for the Discrepancies Between Entangled Two-Photon Measurement Techniques
- Aspects of Two-photon Absorption of Squeezed Light: the CW limit
- Experimental Upper Bounds for Resonance-Enhanced Entangled Two-Photon Absorption Cross Section of Indocyanine Green
- Perturbation-theory approach for predicting vibronic selectivity by entangled-photon-pair absorption