Experimental demonstration of a measurement-based realisation of a quantum channel

W McCutcheon, A McMillan, J G Rarity and M S Tame
Institute of Physics (IOP)
Published 2018
Publication Date:
2018-03-28
Publisher:
Institute of Physics (IOP)
Electronic ISSN:
1367-2630
Topics:
Physics
Published by:
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autor W McCutcheon, A McMillan, J G Rarity and M S Tame
beschreibung We introduce and experimentally demonstrate a method for realising a quantum channel using the measurement-based model. Using a photonic setup and modifying the basis of single-qubit measurements on a four-qubit entangled cluster state, representative channels are realised for the case of a single qubit in the form of amplitude and phase damping channels. The experimental results match the theoretical model well, demonstrating the successful performance of the channels. We also show how other types of quantum channels can be realised using our approach. This work highlights the potential of the measurement-based model for realising quantum channels which may serve as building blocks for simulations of realistic open quantum systems.
citation_standardnr 6219682
datenlieferant ipn_articles
feed_id 3941
feed_publisher Institute of Physics (IOP)
feed_publisher_url http://www.iop.org/
insertion_date 2018-03-28
journaleissn 1367-2630
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher Institute of Physics (IOP)
quelle New Journal of Physics
relation http://iopscience.iop.org/1367-2630/20/3/033019
search_space articles
shingle_author_1 W McCutcheon, A McMillan, J G Rarity and M S Tame
shingle_author_2 W McCutcheon, A McMillan, J G Rarity and M S Tame
shingle_author_3 W McCutcheon, A McMillan, J G Rarity and M S Tame
shingle_author_4 W McCutcheon, A McMillan, J G Rarity and M S Tame
shingle_catch_all_1 Experimental demonstration of a measurement-based realisation of a quantum channel
We introduce and experimentally demonstrate a method for realising a quantum channel using the measurement-based model. Using a photonic setup and modifying the basis of single-qubit measurements on a four-qubit entangled cluster state, representative channels are realised for the case of a single qubit in the form of amplitude and phase damping channels. The experimental results match the theoretical model well, demonstrating the successful performance of the channels. We also show how other types of quantum channels can be realised using our approach. This work highlights the potential of the measurement-based model for realising quantum channels which may serve as building blocks for simulations of realistic open quantum systems.
W McCutcheon, A McMillan, J G Rarity and M S Tame
Institute of Physics (IOP)
1367-2630
13672630
shingle_catch_all_2 Experimental demonstration of a measurement-based realisation of a quantum channel
We introduce and experimentally demonstrate a method for realising a quantum channel using the measurement-based model. Using a photonic setup and modifying the basis of single-qubit measurements on a four-qubit entangled cluster state, representative channels are realised for the case of a single qubit in the form of amplitude and phase damping channels. The experimental results match the theoretical model well, demonstrating the successful performance of the channels. We also show how other types of quantum channels can be realised using our approach. This work highlights the potential of the measurement-based model for realising quantum channels which may serve as building blocks for simulations of realistic open quantum systems.
W McCutcheon, A McMillan, J G Rarity and M S Tame
Institute of Physics (IOP)
1367-2630
13672630
shingle_catch_all_3 Experimental demonstration of a measurement-based realisation of a quantum channel
We introduce and experimentally demonstrate a method for realising a quantum channel using the measurement-based model. Using a photonic setup and modifying the basis of single-qubit measurements on a four-qubit entangled cluster state, representative channels are realised for the case of a single qubit in the form of amplitude and phase damping channels. The experimental results match the theoretical model well, demonstrating the successful performance of the channels. We also show how other types of quantum channels can be realised using our approach. This work highlights the potential of the measurement-based model for realising quantum channels which may serve as building blocks for simulations of realistic open quantum systems.
W McCutcheon, A McMillan, J G Rarity and M S Tame
Institute of Physics (IOP)
1367-2630
13672630
shingle_catch_all_4 Experimental demonstration of a measurement-based realisation of a quantum channel
We introduce and experimentally demonstrate a method for realising a quantum channel using the measurement-based model. Using a photonic setup and modifying the basis of single-qubit measurements on a four-qubit entangled cluster state, representative channels are realised for the case of a single qubit in the form of amplitude and phase damping channels. The experimental results match the theoretical model well, demonstrating the successful performance of the channels. We also show how other types of quantum channels can be realised using our approach. This work highlights the potential of the measurement-based model for realising quantum channels which may serve as building blocks for simulations of realistic open quantum systems.
W McCutcheon, A McMillan, J G Rarity and M S Tame
Institute of Physics (IOP)
1367-2630
13672630
shingle_title_1 Experimental demonstration of a measurement-based realisation of a quantum channel
shingle_title_2 Experimental demonstration of a measurement-based realisation of a quantum channel
shingle_title_3 Experimental demonstration of a measurement-based realisation of a quantum channel
shingle_title_4 Experimental demonstration of a measurement-based realisation of a quantum channel
timestamp 2025-06-30T23:33:53.705Z
titel Experimental demonstration of a measurement-based realisation of a quantum channel
titel_suche Experimental demonstration of a measurement-based realisation of a quantum channel
topic U
uid ipn_articles_6219682