A quantum optical description of photon statistics and cross-correlations in high harmonic generation
arXiv:2004.05358 · doi:10.1103/PhysRevA.104.033703
Abstract
We present a study of photon statistics associated with high-order harmonic generation (HHG) involving one-mode and intermodal correlations of the high harmonic photons. The aim of the paper is to give insight into the nonclassical properties of high-order harmonic modes. To this end, we use a simplified model describing an elementary quantum emitter: the model of a two-level atom. While the material system is extremely simplified in this description, the conclusions and the methods may be generalized for more complex cases. Our primary interest is an effective model of HHG in which the exciting pulse is classical, and the harmonics are quantized, although we touch upon the more generalized, fully quantized model as well. Evolution of the Mandel-parameter, photon antibunching, squeezing and cross-correlations are calculated. Results imply that with respect to a single quantized emitter, nonclassicality of the harmonics is present: sub-Poissonian photon statistic and squeezing can characterize certain optical modes, while strong anticorrelation can also be present.
21 pages, 13 figures
References in corpus (6)
- Testing nonclassicality in multimode fields: a unified derivation of classical inequalities
- On the Quantum-Optical Nature of High Harmonic Generation
- Subcycle Quantum Electrodynamics
- High-order harmonics as induced by a quantized field:a phase-space picture
- Quantum-Optical Spectrometry in Relativistic Laser-Plasma Interactions Using the High-Harmonic Generation Process: A Proposal
- Quantum Optical Aspects of High-Harmonic Generation
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- High-Order Harmonic Generation with Beyond-Semiclassical Emitter Dynamics: A Strong-Field Quantum Optical Heisenberg Picture Approach