English

Performance of a two-mode coherent superposed channel in continuous-variable quantum teleportation

Quantum Physics 2026-07-02 v1 Optics

Abstract

Glauber's coherent state is denoted by α\ket{\alpha} and its two-mode extension is represented by α,β\ket{\alpha,\beta}. In this work, we introduce a two-mode superposition operator A=tab+rabA=tab+ra^\dagger b^\dagger, whose action on the two-mode coherent state produces the two-mode coherent superposed quantum state ψ=(tab+rab)α,β\ket{\psi}=(tab+ra^\dagger b^\dagger)\ket{\alpha,\beta}. We investigate the nonclassicality and quantum non-Gaussianity of this state by means of the Wigner distribution and Wigner logarithmic negativity. Once its intrinsic nonclassical and non-Gaussian structure is established, the state is employed as the entangled resource in the Braunstein-Kimble continuous-variable (CV) teleportation protocol. We compute the ideal teleportation fidelity for coherent and squeezed inputs and analyze how the strengths of nonclassicality and non-Gaussianity influence the teleportation efficiency. Our results identify specific parameter regimes where enhanced non-Gaussian features or increased nonclassicality enable fidelities beyond the classical threshold, thereby revealing the operational significance of engineered two-mode quantum states in CV quantum information processing.

Keywords

Cite

@article{arxiv.2607.01786,
  title  = {Performance of a two-mode coherent superposed channel in continuous-variable quantum teleportation},
  author = {Deepak and Arpita Chatterjee},
  journal= {arXiv preprint arXiv:2607.01786},
  year   = {2026}
}

Comments

7 Pages, 146 references and 4 figures