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MicroCloud Hologram Inc. Studies Quantum Computing Methods Based on the Universal Quantum Variable Form, Multi-Quantum Variable Compatibility and Adaptive Measurement

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MicroCloud Hologram (NASDAQ: HOLO) announced a proposed universal “quantum variable” computing method and a specific implementation model on October 7, 2025. The method is designed to work with traditional qubits, high‑dimensional qubits (d>2), and quantum continuous variables, using an auxiliary‑mediated mechanism and adaptive local measurements.

The proposed implementation relies on three elements: repeated use of a single two‑body auxiliary‑register interaction gate, auxiliaries prepared in a single state, and local measurements of auxiliaries. The company also said it plans to invest over $400 million in quantum computing, quantum holography, blockchain, AI and AR technology sectors.

MicroCloud Hologram (NASDAQ: HOLO) ha annunciato il 7 ottobre 2025 un metodo universale di calcolo a variabile quantistica e un modello di implementazione specifico. Il metodo è progettato per lavorare con qubit tradizionali, qubit ad alta dimensionalità (d>2) e variabili continue quantistiche, utilizzando un meccanismo auxiliary-mediated e misurazioni locali adattive.

La proposta di implementazione si basa su tre elementi: uso ripetuto di un'unica porta di interazione ausiliaria a due corpi, ausiliari preparati in un unico stato e misurazioni locali degli ausiliari. L'azienda ha inoltre dichiarato di pianificare investimenti superiori a 400 milioni di dollari nei settori del calcolo quantistico, dell'olografia quantistica, della blockchain, dell'IA e della realtà aumentata (AR).

MicroCloud Hologram (NASDAQ: HOLO) anunció el 7 de octubre de 2025 un método universal de cómputo de variable cuántica y un modelo de implementación específico. El método está diseñado para funcionar con qubits tradicionales, qubits de alta dimensionalidad (d>2) y variables cuánticas continuas, utilizando un mecanismo auxiliary-mediated y mediciones locales adaptativas.

La implementación propuesta se apoya en tres elementos: el uso repetido de una única puerta de interacción auxiliar de dos cuerpos, auxiliares preparados en un único estado y mediciones locales de los auxiliares. La empresa también dijo que planea invertir más de 400 millones de dólares en computación cuántica, holografía cuántica, blockchain, IA y AR.

MicroCloud Hologram (NASDAQ: HOLO)는 2025년 10월 7일 보편적 '양자 변수' 계산 방법과 구체적인 구현 모델을 발표했습니다. 이 방법은 전통적인 큐비트, 고차원 큐비트(d>2) 및 양자 연속 변수와 함께 작동하도록 설계되었으며, 보조 매개 메커니즘과 적응적 국부 측정을 사용합니다.

제안된 구현은 세 가지 요소에 의존합니다: 두 바디 보조 레지스터 상호 작용 게이트의 단일 반복 사용, 단일 상태로 준비된 보조들, 그리고 보조에 대한 국부 측정. 회사는 또한 양자 컴퓨팅, 양자 홀로그램, 블록체인, AI 및 AR 기술 분야에 4억 달러 이상를 투자할 계획이라고 밝혔습니다.

MicroCloud Hologram (NASDAQ: HOLO) a annoncé le 7 octobre 2025 une méthode universelle de calcul «variable quantique» et un modèle de mise en œuvre spécifique. La méthode est conçue pour fonctionner avec des qubits traditionnels, des qubits à haute dimension (d>2) et des variables continues quantiques, en utilisant un mécanisme auxiliaire-médié et des mesures locales adaptatives.

L'implémentation proposée repose sur trois éléments: l'utilisation répétée d'une unique porte d'interaction auxiliaire à deux corps, des auxiliaires préparés dans un seul état et des mesures locales des auxiliaires. L'entreprise a également déclaré son intention d'investir plus de 400 millions de dollars dans les secteurs du calcul quantique, de l'holographie quantique, de la blockchain, de l'IA et de la réalité augmentée (AR).

MicroCloud Hologram (NASDAQ: HOLO) kündigte am 7. Oktober 2025 eine universelle «quantische Variable»-Rechenmethode sowie ein spezifisches Implementierungsmodell an. Die Methode soll mit traditionellen Qubits, hochdimensionalen Qubits (d>2) und Quantenvariablen arbeiten, und nutzt einen auxiliary-mediated-Mechanismus sowie adaptive lokale Messungen.

Die vorgeschlagene Implementierung beruht auf drei Elementen: wiederholte Nutzung einer einzigen zweikörperigen Hilfsregister-Interaktionsgatter, Hilfsqubits vorbereitet in einem Zustand und lokale Messungen der Hilfsqubits. Das Unternehmen sagte außerdem, dass es über 400 Millionen Dollar in Quantencomputing, Quanten-Holografie, Blockchain, KI- und AR-Technologien investieren will.

MicroCloud Hologram (NASDAQ: HOLO) أعلن في 7 أكتوبر 2025 عن طريقة حوسبة عالمية بـ“متغير كمي” ونموذج تنفيذ محدد. صُممت الطريقة للعمل مع كيوبتات تقليدية، كيوبتات عالية الأبعاد (d>2) ومتغيرات كمومية مستمرة، باستخدام آلية auxiliary-mediated وآليات قياس محلية تكيفية.

يعتمد التنفيذ المقترح على ثلاثة عناصر: الاستخدام المتكرر لباب تفاعل مساعد ثنائي الجسم، مساعدين مُحضّرين في حالة واحدة، وقياسات محلية للمساعدين. كما قالت الشركة إنها ستستثمر أكثر من 400 مليون دولار في مجالات الحوسبة الكمية، والهولوجرافيا الكمية، والبلوك تشين، والذكاء الاصطناعي وواقع الواقع المعزز AR.

MicroCloud Hologram (NASDAQ: HOLO) 宣布在2025年10月7日推出一種 通用“量子變量”計算方法 及一個具體的實施模型。該方法設計用於與傳統量子位、高維量子位(d>2)以及量子連續變量一同工作,使用一種 輔助手/auxiliary-mediated 機制和自適應局部測量。

所提議的實施依賴三個要素:重複使用單一的雙體輔助寄存器互動閘、以單一狀態生成的輔助量,以及對輔助量的局部測量。公司還表示計畫在量子計算、量子全像、區塊鏈、人工智慧和增強現實等領域投資 超過4億美元.

Positive
  • Proposes universal quantum variable method compatible with qubits, qudits, QCV
  • Implementation model needs only one fixed two‑body auxiliary‑register gate
  • Announced plan to invest over $400 million in quantum and adjacent technologies
Negative
  • Investment plan of over $400 million creates execution and funding risk noted under forward‑looking statements

Insights

HOLO describes a universal "quantum variable" model and a concise auxiliary-mediated implementation, but presents no experimental results.

MicroCloud Hologram Inc. proposes a universal "quantum variable" form that applies to qubits, higher-dimensional qudits, and quantum continuous variables, using an auxiliary to mediate gate operations on isolated "quantum memory" registers. The company outlines an implementation relying on a single fixed two-body auxiliary-register interaction gate, auxiliaries prepared in a single state, and local measurements of auxiliaries to drive computation.

The proposal claims compatibility with hybrid quantum-classical processing similar to measurement-based quantum computing and highlights applicability to high-dimensional information processing and complex simulations. The announcement includes a stated plan to invest $400 million in related technologies and frames the work as forward-looking under a Safe Harbor statement.

Key limitations in the disclosed content matter: there are no experimental demonstrations, benchmarks, error rates, resource estimates, or timelines. Absent empirical validation, the near-term technical and commercial impact remains uncertain. Monitor for concrete milestones such as published proofs, peer-reviewed demonstrations, prototype hardware, or specific development timelines; the press date is October 7, 2025.

SHENZHEN, China, Oct. 07, 2025 (GLOBE NEWSWIRE) -- MicroCloud Hologram Inc. (NASDAQ: HOLO), (“HOLO” or the "Company"), is a technology service provider. Regarding the optimization problem of variable selection and computation methods in quantum computing, they proposed a quantum computing method based on the universal "quantum variable" form. This method breaks the dependence of traditional quantum computing on quantum variables of specific dimensions and demonstrates strong flexibility. In this method, the "auxiliary" plays a key role, with its core function being to mediate gate operations on well-isolated "quantum memory" registers. The "quantum memory" registers here are the core units for storing and processing quantum information, while the auxiliary, through specific interactions, enables the control of gate operations on the registers without directly interfering with the core quantum state of the registers. More importantly, this method is not limited to a specific type of quantum variable; it is applicable to traditional qubits, high-dimensional qubits with dimension d>2, or quantum continuous variable (QCV) settings. This universality allows the quantum computing method to flexibly select the most suitable quantum variables based on different application scenarios and technical conditions, greatly expanding its range of applications.

To enable this quantum computing method to achieve universal quantum computing stably and efficiently, HOLO further proposed a specific implementation model. In this model, the realization of universal quantum computing relies solely on three core elements: the repeated application of a single fixed two-body auxiliary-register interaction gate, auxiliaries prepared in a single state, and local measurements of these auxiliaries. First, the two-body auxiliary-register interaction gate serves as the foundation for implementing quantum operations. Through the repeated use of this gate, it is possible to construct various basic quantum gate operations required for universal quantum computing, avoiding the system complexity introduced by using multiple complex gate structures. Second, auxiliaries prepared in a single state ensure that each auxiliary participating in the computation has a consistent initial state, reducing computational errors caused by variations in the initial states of auxiliaries. Finally, local measurements of auxiliaries are a critical step in obtaining key information during the computation process and advancing the computation. Through local measurements, it is possible to regulate the computation process without destroying the quantum state of the register.

HOLO’s quantum computing model is not only innovative in its implementation approach but also possesses the same hybrid quantum-classical processing advantages as measurement-based quantum computing (MBQC). The core of hybrid quantum-classical processing lies in combining the parallelism and high information density advantages of quantum computing with the flexibility and ease of control of classical computing. During the computation process, the quantum component handles complex quantum state operations that are difficult for classical computing to address, while the classical component takes on tasks such as control, feedback, and data processing.

The quantum computing method and model proposed by HOLO provide new ideas and directions for the development of the quantum computing field. Its universal "quantum variable" form breaks the limitations of qubits, enabling the full application of higher-dimensional quantum variables and quantum continuous variables. The unique auxiliary-mediated mechanism and concise model implementation elements reduce the complexity of quantum computing systems. The combination of adaptive measurement and classical feedforward ensures computational determinism. Additionally, the hybrid quantum-classical processing advantages, comparable to those of measurement-based quantum computing (MBQC), further enhance its practical application value. In future quantum computing research, this model is expected to provide significant support for building more efficient, flexible, and easily implementable quantum computing systems, promoting the transition of quantum computing from theoretical research to practical applications. Particularly in fields requiring high-dimensional quantum information processing and complex quantum simulations, it may demonstrate significant advantages, contributing to solving complex computational problems in practical scenarios.

About MicroCloud Hologram Inc.

MicroCloud is committed to providing leading holographic technology services to its customers worldwide. MicroCloud’s holographic technology services include high-precision holographic light detection and ranging (“LiDAR”) solutions, based on holographic technology, exclusive holographic LiDAR point cloud algorithms architecture design, breakthrough technical holographic imaging solutions, holographic LiDAR sensor chip design and holographic vehicle intelligent vision technology to service customers that provide reliable holographic advanced driver assistance systems (“ADAS”). MicroCloud also provides holographic digital twin technology services for customers and has built a proprietary holographic digital twin technology resource library. MicroCloud’s holographic digital twin technology resource library captures shapes and objects in 3D holographic form by utilizing a combination of MicroCloud’s holographic digital twin software, digital content, spatial data-driven data science, holographic digital cloud algorithm, and holographic 3D capture technology. MicroCloud focuses on the development of quantum computing and quantum holography, and plans to invest over $400 million in cutting-edge technology sectors, including Bitcoin-related blockchain development, quantum computing technology development, quantum holography development, and the development of derivatives and technologies in artificial intelligence and augmented reality (AR).
For more information, please visit http://ir.mcholo.com/

Safe Harbor Statement

This press release contains forward-looking statements as defined by the Private Securities Litigation Reform Act of 1995. Forward-looking statements include statements concerning plans, objectives, goals, strategies, future events or performance, and underlying assumptions and other statements that are other than statements of historical facts. When the Company uses words such as "may," "will," "intend," "should," "believe," "expect," "anticipate," "project," "estimate," or similar expressions that do not relate solely to historical matters, it is making forward-looking statements. Forward-looking statements are not guarantees of future performance and involve risks and uncertainties that may cause the actual results to differ materially from the Company's expectations discussed in the forward-looking statements. These statements are subject to uncertainties and risks including, but not limited to, the following: the Company's goals and strategies; the Company's future business development; product and service demand and acceptance; changes in technology; economic conditions; reputation and brand; the impact of competition and pricing; government regulations; fluctuations in general economic; financial condition and results of operations; the expected growth of the holographic industry and business conditions in China and the international markets the Company plans to serve and assumptions underlying or related to any of the foregoing and other risks contained in reports filed by the Company with the Securities and Exchange Commission ("SEC"), including the Company's most recently filed Annual Report on Form 10-K and current report on Form 6-K and its subsequent filings. For these reasons, among others, investors are cautioned not to place undue reliance upon any forward-looking statements in this press release. Additional factors are discussed in the Company's filings with the SEC, which are available for review at www.sec.gov. The Company undertakes no obligation to publicly revise these forward-looking statements to reflect events or circumstances that arise after the date hereof.

Contacts
MicroCloud Hologram Inc.
Email: IR@mcvrar.com


FAQ

What quantum computing method did MicroCloud Hologram (HOLO) announce on October 7, 2025?

HOLO proposed a universal "quantum variable" computing method applicable to qubits, high‑dimensional qudits, and quantum continuous variables.

How does HOLO’s proposed implementation achieve universal quantum computing?

It relies on three elements: repeated use of a single two‑body auxiliary‑register gate, auxiliaries prepared in a single state, and local measurements of auxiliaries.

Will HOLO’s method require many different gate types or a simpler gate set?

HOLO says the model uses a single fixed two‑body interaction gate repeatedly, avoiding multiple complex gate types.

Does HOLO plan to invest in quantum computing and related technologies?

Yes; HOLO stated plans to invest over $400 million across quantum computing, quantum holography, blockchain, AI and AR.

What role do auxiliaries play in HOLO’s quantum computing model?

Auxiliaries mediate gate operations on isolated quantum memory registers and are measured locally to advance computation without disturbing registers.

What risks did HOLO disclose related to this announcement?

HOLO included standard forward‑looking risk cautions, noting uncertainties around plans, technology changes, market acceptance, and execution.
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