Molecular Qubits Based on Zwitterions with Close pKa Values and Comparable Charge-Transfer Energies: A Theoretical Analysis

This theoretical analysis proposes zwitterionic compounds as molecular qubits. Organic zwitterions are characterized by functional groups with closely spaced pKa values, while inorganic or hybrid zwitterions exhibit comparable charge transfer energies between two internal centers. In organic systems...

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Autor principal: González Santiago, Omar
Formato: Otro
Lenguaje:inglés
Publicado: Zenodo 0023
Materias:
Acceso en línea:http://eprints.uanl.mx/30358/1/Molecular%20Qubits%20Based%20on%20Zwitterions%20with%20Close%20pKa%20Values%20VFINAL.pdf
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author González Santiago, Omar
author_facet González Santiago, Omar
author_sort González Santiago, Omar
collection Repositorio Institucional
description This theoretical analysis proposes zwitterionic compounds as molecular qubits. Organic zwitterions are characterized by functional groups with closely spaced pKa values, while inorganic or hybrid zwitterions exhibit comparable charge transfer energies between two internal centers. In organic systems, the strategic proximity of pKa values enables precise control over protonation states, facilitating the representation of quantum basis states |0⟩ and |1⟩, as well as superposition states within individual molecules. In inorganic systems, discrete quantum states arise from charge localization at distinct centers, with superposition resulting from partial charge delocalization. The essential characteristics of an ideal zwitterionic molecule for encoding quantum information are discussed. While the primary application lies in quantum computing, other potential uses are not excluded.
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spelling eprints-303582025-08-25T21:05:00Z http://eprints.uanl.mx/30358/ Molecular Qubits Based on Zwitterions with Close pKa Values and Comparable Charge-Transfer Energies: A Theoretical Analysis González Santiago, Omar QD Química This theoretical analysis proposes zwitterionic compounds as molecular qubits. Organic zwitterions are characterized by functional groups with closely spaced pKa values, while inorganic or hybrid zwitterions exhibit comparable charge transfer energies between two internal centers. In organic systems, the strategic proximity of pKa values enables precise control over protonation states, facilitating the representation of quantum basis states |0⟩ and |1⟩, as well as superposition states within individual molecules. In inorganic systems, discrete quantum states arise from charge localization at distinct centers, with superposition resulting from partial charge delocalization. The essential characteristics of an ideal zwitterionic molecule for encoding quantum information are discussed. While the primary application lies in quantum computing, other potential uses are not excluded. Zenodo 0023-08-25 Otro NonPeerReviewed text en http://eprints.uanl.mx/30358/1/Molecular%20Qubits%20Based%20on%20Zwitterions%20with%20Close%20pKa%20Values%20VFINAL.pdf http://eprints.uanl.mx/30358/1.haspreviewThumbnailVersion/Molecular%20Qubits%20Based%20on%20Zwitterions%20with%20Close%20pKa%20Values%20VFINAL.pdf González Santiago, Omar (0023) Molecular Qubits Based on Zwitterions with Close pKa Values and Comparable Charge-Transfer Energies: A Theoretical Analysis. Zenodo, Ginebra, Suiza. https://zenodo.org/records/16930606
spellingShingle QD Química
González Santiago, Omar
Molecular Qubits Based on Zwitterions with Close pKa Values and Comparable Charge-Transfer Energies: A Theoretical Analysis
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Molecular Qubits Based on Zwitterions with Close pKa Values and Comparable Charge-Transfer Energies: A Theoretical Analysis
title_full Molecular Qubits Based on Zwitterions with Close pKa Values and Comparable Charge-Transfer Energies: A Theoretical Analysis
title_fullStr Molecular Qubits Based on Zwitterions with Close pKa Values and Comparable Charge-Transfer Energies: A Theoretical Analysis
title_full_unstemmed Molecular Qubits Based on Zwitterions with Close pKa Values and Comparable Charge-Transfer Energies: A Theoretical Analysis
title_short Molecular Qubits Based on Zwitterions with Close pKa Values and Comparable Charge-Transfer Energies: A Theoretical Analysis
title_sort molecular qubits based on zwitterions with close pka values and comparable charge transfer energies a theoretical analysis
topic QD Química
url http://eprints.uanl.mx/30358/1/Molecular%20Qubits%20Based%20on%20Zwitterions%20with%20Close%20pKa%20Values%20VFINAL.pdf
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