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Bloch Sphere Binary Trees: A method for the visualization of sets of multi-qubit systems pure states

Understanding the evolution of a multi-qubit quantum system, or elucidating what portion of the Hilbert space is occupied by a quantum dataset becomes increasingly hard with the number of qubits. In this context, the visualisation of sets of multi-qubit pure quantum states on a single image can be h...

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Detalles Bibliográficos
Autores principales: Barthe, Alice, Grossi, Michele, Tura, Jordi, Dunjko, Vedran
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2856520
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author Barthe, Alice
Grossi, Michele
Tura, Jordi
Dunjko, Vedran
author_facet Barthe, Alice
Grossi, Michele
Tura, Jordi
Dunjko, Vedran
author_sort Barthe, Alice
collection CERN
description Understanding the evolution of a multi-qubit quantum system, or elucidating what portion of the Hilbert space is occupied by a quantum dataset becomes increasingly hard with the number of qubits. In this context, the visualisation of sets of multi-qubit pure quantum states on a single image can be helpful. However, the current approaches to visualization of this type only allow the representation of a set of single qubits (not allowing multi-qubit systems) or a just a single multi-qubit system (not suitable if we care about sets of states), sometimes with additional restrictions, on symmetry or entanglement for example. [1{3]. In this work we present a mapping that can uniquely represent a set of arbitrary multi-qubit pure states on what we call a Binary Tree of Bloch Spheres. The backbone of this technique is the combination of the Schmidt decomposition and the Bloch sphere representation. We illustrate how this can be used in the context of understanding the time evolution of quantum states, e.g. providing immediate insights into the periodicity of the system and even entanglement properties. We also provide a recursive algorithm which translates from the computational basis state representation to the binary tree of Bloch spheres representation. The algorithm was implemented together with a visualization library in Python released as open source.}
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institution Organización Europea para la Investigación Nuclear
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publishDate 2023
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spelling cern-28565202023-05-05T14:59:26Zhttp://cds.cern.ch/record/2856520engBarthe, AliceGrossi, MicheleTura, JordiDunjko, VedranBloch Sphere Binary Trees: A method for the visualization of sets of multi-qubit systems pure statesquant-phGeneral Theoretical PhysicsUnderstanding the evolution of a multi-qubit quantum system, or elucidating what portion of the Hilbert space is occupied by a quantum dataset becomes increasingly hard with the number of qubits. In this context, the visualisation of sets of multi-qubit pure quantum states on a single image can be helpful. However, the current approaches to visualization of this type only allow the representation of a set of single qubits (not allowing multi-qubit systems) or a just a single multi-qubit system (not suitable if we care about sets of states), sometimes with additional restrictions, on symmetry or entanglement for example. [1{3]. In this work we present a mapping that can uniquely represent a set of arbitrary multi-qubit pure states on what we call a Binary Tree of Bloch Spheres. The backbone of this technique is the combination of the Schmidt decomposition and the Bloch sphere representation. We illustrate how this can be used in the context of understanding the time evolution of quantum states, e.g. providing immediate insights into the periodicity of the system and even entanglement properties. We also provide a recursive algorithm which translates from the computational basis state representation to the binary tree of Bloch spheres representation. The algorithm was implemented together with a visualization library in Python released as open source.}arXiv:2302.02957oai:cds.cern.ch:28565202023-02-06
spellingShingle quant-ph
General Theoretical Physics
Barthe, Alice
Grossi, Michele
Tura, Jordi
Dunjko, Vedran
Bloch Sphere Binary Trees: A method for the visualization of sets of multi-qubit systems pure states
title Bloch Sphere Binary Trees: A method for the visualization of sets of multi-qubit systems pure states
title_full Bloch Sphere Binary Trees: A method for the visualization of sets of multi-qubit systems pure states
title_fullStr Bloch Sphere Binary Trees: A method for the visualization of sets of multi-qubit systems pure states
title_full_unstemmed Bloch Sphere Binary Trees: A method for the visualization of sets of multi-qubit systems pure states
title_short Bloch Sphere Binary Trees: A method for the visualization of sets of multi-qubit systems pure states
title_sort bloch sphere binary trees: a method for the visualization of sets of multi-qubit systems pure states
topic quant-ph
General Theoretical Physics
url http://cds.cern.ch/record/2856520
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AT grossimichele blochspherebinarytreesamethodforthevisualizationofsetsofmultiqubitsystemspurestates
AT turajordi blochspherebinarytreesamethodforthevisualizationofsetsofmultiqubitsystemspurestates
AT dunjkovedran blochspherebinarytreesamethodforthevisualizationofsetsofmultiqubitsystemspurestates