English

Dual opposing quadrature-PT symmetry

Quantum Physics 2025-01-23 v1

Abstract

Our recent research on type-I quadrature parity-time (PT) symmetry, utilizing an open twin-beam system, not only enables observing genuine quantum photonic PT symmetry amid phase-sensitive amplification (PSA) and loss in the presence of Langevin noise but also reveals additional classical-to-quantum (C2Q) transitions in quadrature and relative-intensity noise fluctuations. In contrast to the previous setup, our exploration of an alternative system assuming no loss involves a type-II PSA-only scheme. This scheme facilitates dual opposing quadrature PT symmetry, offering a comprehensive and complementary comprehension of C2Q transitions and anti-Hermiticity-enhanced quantum sensing. Furthermore, our investigation into the correlation with the Einstein-Podolsky-Rosen criteria uncovers previously unexplored connections between PT symmetry and nonclassicality, as well as quantum entanglement within the continuous-variable framework.

Keywords

Cite

@article{arxiv.2405.15612,
  title  = {Dual opposing quadrature-PT symmetry},
  author = {Wencong Wang and Jacob Kokinda and Jiazhen Li and Qing Gu and Dongmei Liu and Jianming Wen},
  journal= {arXiv preprint arXiv:2405.15612},
  year   = {2025}
}

Comments

This is type-II quadrature PT symmetry, compared to type-I quadrature PT symmetry (arXiv:2301.05511)