Cyclic teleportation in noisy channel with nondemolition parity analysis and weak measurement
From MaRDI portal
Publication:2107050
DOI10.1007/s11128-022-03461-5OpenAlexW4221038144MaRDI QIDQ2107050
Liang Tang, Zhen Yang, Fan Wu, Jia-Yin Peng, Zhi-wen Mo, Ming-qiang Bai
Publication date: 29 November 2022
Published in: Quantum Information Processing (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11128-022-03461-5
weak measurementamplitude dampingcross-Kerr nonlinearitiesnondemolition parity analysisquantum decoherencecyclic teleportation
Related Items
Quantum multicast protocol and multi-output remote operation implementation via four-particle cluster state, Deterministic hierarchical quantum operation sharing with five-qubit partially entangled states, Multi-type-output assisted cloning of unknown single-qubit states, Correlated effects of Pauli noise on controlled teleportation of an arbitrary single-qubit state via a three-qubit W state, Controlled and assisted cloning of an arbitrary unknown states via maximal slice states
Cites Work
- Bidirectional teleportation of a pure EPR state by using GHZ states
- Bidirectional quantum states sharing
- Teleportation of a general two-photon state employing a polarization-entangled \(\chi\) state with nondemolition parity analyses
- Joint remote state preparation of arbitrary two-particle states via GHZ-type states
- Deterministic transmission of an arbitrary single-photon polarization state through bit-flip error channel
- Deterministic multi-hop controlled teleportation of arbitrary single-qubit state
- Controlled teleportation of an arbitrary two-particle pure or mixed state by using a five-qubit cluster state
- Controlled teleportation of an arbitrary \(n\)-qubit quantum information using quantum secret sharing of classical message
- The transition probability in the state space of a \(^*\)-algebra
- Optical proposals for controlled delayed-choice experiment based on weak cross-Kerr nonlinearities
- Cyclic quantum teleportation
- Quantum secure direct communication with optimal quantum superdense coding by using general four-qubit states
- Annular controlled teleportation
- Distributing a multi-photon polarization-entangled state with unitary fidelity via arbitrary collective noise channels
- On the controlled cyclic quantum teleportation of an arbitrary two-qubit entangled state by using a ten-qubit entangled state
- Controlled cyclic quantum teleportation of an arbitrary two-qubit entangled state by using a ten-qubit entangled state
- Fidelity for Mixed Quantum States
- Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels
- Experimental quantum teleportation