WO2024231907 - METHOD AND SYSTEM FOR LARGE-SCALE COMPUTATION OF QUANTUM ALGORITHMS USING NEUROMORPHIC QUANTUM COMPUTING
National phase entry is expected:
Publication Number
WO/2024/231907
Publication Date
14.11.2024
International Application No.
PCT/IB2024/059272
International Filing Date
24.09.2024
Title **
[English]
METHOD AND SYSTEM FOR LARGE-SCALE COMPUTATION OF QUANTUM ALGORITHMS USING NEUROMORPHIC QUANTUM COMPUTING
[French]
PROCÉDÉ ET SYSTÈME DE CALCUL À GRANDE ÉCHELLE D'ALGORITHMES QUANTIQUES EN UTILISANT UN CALCUL QUANTIQUE NEUROMORPHIQUE
Applicants **
DHF HOLDING ESTABLISHMENT
Inventors
IVANOV, Adams
RAHMEH, Samer
Application details
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International Searching Authority |
EPO
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| Recordal of a Change of the Applicant's Name/Address |
Change of Applicant's Name and Address
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| Type of Assignment |
The Standard Agent's Assignment
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| Applicant's Legal Status |
Legal Entity
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| Entry into National Phase under |
Chapter I
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| Patent Delivery |
Send the Letters Patent by Courier
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| Translation |
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* The data is based on automatic recognition. Please verify and amend if necessary.
** IP-Coster compiles data from publicly available sources. If this data includes your personal information, you can contact us to request its removal.
Quotation for National Phase entry
| Country | Stages | Total | |
|---|---|---|---|
| China | Filing, Examination, Granting | 2228 | |
| EPO | Filing, Examination, Granting | 12225 | |
| Japan | Filing, Examination, Granting | 2399 | |
| South Korea | Filing, Examination, Granting | 2480 | |
| USA | Filing, Examination, Granting | 15540 |

Total:
34,872
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Abstract[English]
Current quantum computing technology, while promising, faces significant challenges that limit its scalability and practical application. These challenges primarily stem from the limited number of qubits available, the high susceptibility of qubits to errors, and the complexity of error correction protocols necessary to maintain coherence in quantum states. As quantum systems grow in size, the need for sophisticated error correction becomes increasingly critical, further complicating the development of reliable quantum computers. The invention described enables efficient, large-scale computation of quantum algorithms and circuits on traditional hardware, without sacrificing the fidelity or capabilities of quantum mechanics-based systems, thus bridging the gap between classical and quantum computing paradigms.[French]
La technologie informatique quantique actuelle, qui est prometteuse, doit relever des défis significatifs qui limitent son évolutivité et son application pratique. Ces défis proviennent principalement du nombre limité de bits quantiques disponibles, de la sensibilité élevée des bits quantiques aux erreurs et de la complexité des protocoles de correction d'erreur nécessaires pour maintenir la cohérence dans des états quantiques. Du fait que les systèmes quantiques se développent, la nécessité d'une correction d'erreur sophistiquée devient de plus en plus critique, ce qui complique en outre le développement d'ordinateurs quantiques fiables. L'invention décrite permet un calcul efficace et à grande échelle d'algorithmes quantiques et de circuits quantiques sur un matériel classique, sans nuire à la fiabilité ni aux capacités de systèmes basés sur la mécanique quantique, comblant ainsi les écarts entre des paradigmes de calcul classique et quantique.