English

Classification and Generation of Light Sources Using Gamma Fitting

Optics 2020-12-17 v1 Quantum Physics

Abstract

In general, the typical approach to discriminate antibunching, bunching or superbunching categories make use of calculating the second-order coherence function g(2)(τ){g^{(2)}}(\tau ) of light. Although the classical light sources correspond to the specific degree of second-order coherence g(2)(0){g^{(2)}}(0), it does not alone constitute a distinguishable metric to characterize and determine light sources. Here we propose a new mechanism to directly classify and generate antibunching, bunching or superbunching categories of light, as well as the classical light sources such as thermal and coherent light, by Gamma fitting according to only one characteristic parameter α\alpha or β\beta. Experimental verification of beams from four-wave mixing process is in agreement with the presented mechanism, and the in fluence of temperature TT and laser detuning Δ\Delta on the measured results are investigated. The proposal demonstrates the potential of classifying and identifying light with different nature, and the most importantly, provides a convenient and simple method to generate light sources meeting various application requirements according to the presented rules. Most notably, the bunching and superbunching are distinguishable in super-Poissonian statistics using our mechanism.

Keywords

Cite

@article{arxiv.2012.08881,
  title  = {Classification and Generation of Light Sources Using Gamma Fitting},
  author = {Shuanghao Zhang and Huaibin Zheng and Gao Wang and Hui Chen and Yuchen He and Sheng Luo and Jianbin Liu and Yu Zhou and Zhuo Xu},
  journal= {arXiv preprint arXiv:2012.08881},
  year   = {2020}
}

Comments

6 pages, 8 figures

R2 v1 2026-06-23T21:00:46.500Z