English

Deterministic construction of arbitrary $W$ states with quadratically increasing number of two-qubit gates

Quantum Physics 2025-08-28 v3

Abstract

We propose a quantum circuit composed of cNOTcNOT gates and four single-qubit gates to generate a WW state of three qubits. This circuit was then enhanced by integrating two-qubit gates to create a WW state of four and five qubits. After a couple of enhancements, we show that an arbitrary WW state can be generated depending only on the degree of enhancement. The generalized formula for the number of two-qubit gates required is given, showing that an nn-qubit WW-state generation can be achieved with quadratically increasing number of two-qubit gates. Also, the practical feasibility is discussed regarding photon sources and various applications of cNOTcNOT gates.

Keywords

Cite

@article{arxiv.1606.09290,
  title  = {Deterministic construction of arbitrary $W$ states with quadratically increasing number of two-qubit gates},
  author = {Firat Diker},
  journal= {arXiv preprint arXiv:1606.09290},
  year   = {2025}
}

Comments

Presented in 2nd International Summit on OPTICS, PHOTONICS AND LASER TECHNOLOGIES (2021)