English

Probing, Quantifying and Freezing Coherence in a Thermal Ensemble of Atoms

Atomic Physics 2018-11-13 v2

Abstract

Creating stable superposed states of matter is one of the most intriguing aspects of quantum physics, leading to a variety of counter-intuitive scenarios along with a possibility of restructuring the way we understand, process and communicate information. Accordingly, there has been a major research thrust in understanding and quantifying such coherent superposed states. Here we propose and experimentally explore a quantifier that captures effective coherent superposition of states in an atomic ensemble at room-temperature. The quantifier provides a direct measure of ground state coherence for electromagnetically induced transparency (EIT) along with distinct signature of transition from EIT to Autler-Townes splitting (ATS) regime in the ensemble. Using the quantifier as an indicator, we further demonstrate a mechanism to coherently control and freeze coherence by introducing an active decay compensation channel. In the growing pursuit of quantum systems at room-temperature, our results provide a unique way to phenomenologically quantify and coherently control coherence in atom-like systems.

Keywords

Cite

@article{arxiv.1803.10169,
  title  = {Probing, Quantifying and Freezing Coherence in a Thermal Ensemble of Atoms},
  author = {Arif Warsi Laskar and Niharika Singh and Pratik Adhikary and Arunabh Mukherjee and Saikat Ghosh},
  journal= {arXiv preprint arXiv:1803.10169},
  year   = {2018}
}

Comments

8 pages,4 figures along with supplementary information