Addressable quantum gates

Fuente: arXiv
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Autori principali: Arrighi, Pablo, Cedzich, Christopher, Costes, Marin, Rémond, Ulysse, Valiron, Benoît
Natura: Preprint
Pubblicazione: 2021
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author Arrighi, Pablo
Cedzich, Christopher
Costes, Marin
Rémond, Ulysse
Valiron, Benoît
author_facet Arrighi, Pablo
Cedzich, Christopher
Costes, Marin
Rémond, Ulysse
Valiron, Benoît
contents We extend the circuit model of quantum computation so that the wiring between gates is soft-coded within registers inside the gates. The addresses in these registers can be manipulated and put into superpositions. This aims at capturing indefinite causal orders and making their geometrical layout explicit: we express the quantum switch and the polarizing beam-splitter within the model. In this context, our main contribution is a full characterization of the anonymity constraints. Indeed, the names used as addresses should not matter beyond the wiring they describe, i.e. quantum evolutions should commute with "renamings". We show that these quantum evolutions can still act non-trivially upon the names. We specify the structure of "nameblind" matrices.
format Preprint
id arxiv_https___arxiv_org_abs_2109_08050
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Addressable quantum gates
Arrighi, Pablo
Cedzich, Christopher
Costes, Marin
Rémond, Ulysse
Valiron, Benoît
Quantum Physics
Emerging Technologies
We extend the circuit model of quantum computation so that the wiring between gates is soft-coded within registers inside the gates. The addresses in these registers can be manipulated and put into superpositions. This aims at capturing indefinite causal orders and making their geometrical layout explicit: we express the quantum switch and the polarizing beam-splitter within the model. In this context, our main contribution is a full characterization of the anonymity constraints. Indeed, the names used as addresses should not matter beyond the wiring they describe, i.e. quantum evolutions should commute with "renamings". We show that these quantum evolutions can still act non-trivially upon the names. We specify the structure of "nameblind" matrices.
title Addressable quantum gates
topic Quantum Physics
Emerging Technologies
url https://arxiv.org/abs/2109.08050