English

Shaping entangled photons through thick scattering media using an advanced wave beacon

Quantum Physics 2024-08-30 v1 Optics

Abstract

Entangled photons provide transformative new paths in the fields of communication, sensing, and computing. However, when entangled photons propagate through a complex medium such as a biological tissue or a turbulent atmosphere, their correlations are scrambled. Using wavefront shaping to compensate for the scattering and retrieve the two-photon correlations is challenging due to the low signal-to-noise ratio of the two-photon signal. While previous works partly addressed this challenge by using feedback from a strong classical laser beam that co-propagates with the entangled photons, such methods frequently depend on assumptions about the complex medium, limiting the applicability of quantum wavefront shaping. In this work, we propose and demonstrate a new feedback mechanism that is inspired by Klyshko's advanced wave picture, in which the classical laser beam counter-propagates with one of the entangled photons and co-propagates with the other. The new Klyshko feedback allows compensation of scattering in thick samples and even in situations where each photon propagates through a different scattering medium. Since the advanced wave picture applies whenever optical reciprocity is valid, such Klyshko optimization can be utilized across a wide range of configurations, offering a robust and alignment-free setup. We therefore believe this protocol will open the door for real-world applications of quantum wavefront shaping.

Keywords

Cite

@article{arxiv.2403.18324,
  title  = {Shaping entangled photons through thick scattering media using an advanced wave beacon},
  author = {Ronen Shekel and Ohad Lib and Yaron Bromberg},
  journal= {arXiv preprint arXiv:2403.18324},
  year   = {2024}
}
R2 v1 2026-06-28T15:35:09.911Z