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Entanglement Identification of Arbitrary Two-Qubit Quantum Channels and the Capabilities to Realise Quantum Teleportation


Affiliations
1 Department of Physics, Institut Teknologi Sepuluh Nopember, Surabaya, Indonesia
 

Objectives: To identify the entanglements of arbitrary two-qubit quantum channels and the capabilities to realise quantum teleportation. Methods: The implementation of Schmidt de composition and measurements of quantum system state are equiped in this research. Findings: By constructing the general form of an arbitrary two qubit and measurement state, we able to determine an entanglement of an arbitrary two qubit by utilising Schmidt decomposition. Next, a capability of an arbitrary two qubit entangled state to realise teleportation can be identified by formulating measurement state and unitary operator. Improvement: The methods used in this paper have relatively simple calculations and very beneficial to be implement before developing quantum teleportation system experimentally.

Keywords

Entangled States, Quantum Channels, Qubit (Quantum Bit), Quantum Teleportation
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  • Entanglement Identification of Arbitrary Two-Qubit Quantum Channels and the Capabilities to Realise Quantum Teleportation

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Authors

Lila Yuwana
Department of Physics, Institut Teknologi Sepuluh Nopember, Surabaya, Indonesia
Agus Purwanto
Department of Physics, Institut Teknologi Sepuluh Nopember, Surabaya, Indonesia
Endarko
Department of Physics, Institut Teknologi Sepuluh Nopember, Surabaya, Indonesia
Dwi Januriyanto
Department of Physics, Institut Teknologi Sepuluh Nopember, Surabaya, Indonesia

Abstract


Objectives: To identify the entanglements of arbitrary two-qubit quantum channels and the capabilities to realise quantum teleportation. Methods: The implementation of Schmidt de composition and measurements of quantum system state are equiped in this research. Findings: By constructing the general form of an arbitrary two qubit and measurement state, we able to determine an entanglement of an arbitrary two qubit by utilising Schmidt decomposition. Next, a capability of an arbitrary two qubit entangled state to realise teleportation can be identified by formulating measurement state and unitary operator. Improvement: The methods used in this paper have relatively simple calculations and very beneficial to be implement before developing quantum teleportation system experimentally.

Keywords


Entangled States, Quantum Channels, Qubit (Quantum Bit), Quantum Teleportation



DOI: https://doi.org/10.17485/ijst%2F2017%2Fv10i43%2F167346