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    <title>Class II Mesoionic Xanthines as Potential Ten-Qubit Quantum Computer Substrate Registers</title>
    <link>http://popups.lib.uliege.be/1373-5411/index.php?id=3744</link>
    <description>Class II mesoionic xanthines such as anhydro-(8-hydroxyalkyl-5-hydroxy-7-oxothia zolo[3,2-a]pyrimidinium hydroxides) are unique, small atomic weight, stable crystalline organic compounds that can be represented as a combination often different resonance structures for each simple xanthine molecule. Each resonance structure contributes a certain percentage to the total resonance of the molecule. This unique resonance represents ten different quantum states of the entire molecule and can thus be exploited as a potential substrate for a ten-qubit register. The number of possible superposition states for such a register in a single molecule is potentially as high as 2' states or (in this case where n = 10) 1,024 complex numbers. In solution the least-unit of this mesoionic crystalline structure is scalable suggesting putative utility for bulk NMR quantum computing. It will be shown that these ten-qubit registers are amenable to standard Deutsch-Jozsa, Shor and Grover algorithms. Additionally, we attempt to formalize VO techniques for our Class II mesoionic xanthines based on a coherent control RF process of cumulative resonant interaction where by utilizing additional degrees of freedom pertinent to a relativistic basis for the qbit (r-qbit) new HD commutation rules allow decoherence to be ontologically overcome </description>
    <category domain="http://popups.lib.uliege.be/1373-5411/index.php?id=65">Full text issues</category>
    <category domain="http://popups.lib.uliege.be/1373-5411/index.php?id=95">Volume 22</category>
    <category domain="http://popups.lib.uliege.be/1373-5411/index.php?id=2720">VIth International Symposium in Honor of Jean-Pier...</category>
    <language>fr</language>
    <pubDate>Thu, 26 Sep 2024 12:21:53 +0200</pubDate>
    <lastBuildDate>Tue, 08 Oct 2024 13:38:13 +0200</lastBuildDate>
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