English

Scrambling and Quantum Teleportation

Quantum Physics 2024-04-23 v1

Abstract

Scrambling is a concept introduced from information loss problem arising in black hole. In this paper we discuss the effect of scrambling from a perspective of pure quantum information theory. We introduce 77-qubit quantum circuit for a quantum teleportation. It is shown that the teleportation can be perfect if a maximal scrambling unitary is used. From this fact we conjecture that ``the quantity of scrambling is proportional to the fidelity of teleportation''. In order to confirm the conjecture we introduce θ\theta-dependent partially scrambling unitary, which reduces to no scrambling and maximal scrambling at θ=0\theta = 0 and θ=π/2\theta = \pi / 2, respectively. Then, we compute the average fidelity analytically, and numerically by making use of qiskit (version 0.36.20.36.2) and 77-qibit real quantum computer ibm_\_oslo. Finally, we conclude that our conjecture can be true or false depending on the choice of qubits for Bell measurement.

Keywords

Cite

@article{arxiv.2211.10068,
  title  = {Scrambling and Quantum Teleportation},
  author = {MuSeong Kim and Mi-Ra Hwang and Eylee Jung and DaeKil Park},
  journal= {arXiv preprint arXiv:2211.10068},
  year   = {2024}
}

Comments

24 pages, 11 pdf figures, 2 png figures

R2 v1 2026-06-28T06:11:18.744Z