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MicroCloud Hologram Inc. Launches a New Computing Paradigm -- Digital Analog Quantum Computing (DAQC)

MicroCloud Hologram Inc. Launches a New Computing Paradigm -- Digital Analog Quantum Computing (DAQC)

盟雲全息公司推出一種新的計算範式——數字模擬量子計算概念(DAQC)
PR Newswire ·  01/06 23:30

SHENZHEN, China, Jan. 6, 2025 /PRNewswire/ -- MicroCloud Hologram Inc. (NASDAQ: HOLO), ("HOLO" or the "Company"), today announced the launch of a brand new computational paradigm — Digital Simulated Quantum Computing (DAQC). This paradigm cleverly combines the flexibility of digital quantum computing with the robustness of simulated quantum simulation, paving new paths for the development of quantum computing. Under this emerging paradigm, HOLO is actively exploring and has proposed an efficient digital simulated quantum algorithm specifically designed for calculating the Quantum Fourier Transform. As a subroutine widely used in various related quantum algorithms, improving the computational efficiency and accuracy of the Quantum Fourier Transform is of crucial importance to the overall development of the quantum algorithm framework.

中國深圳,2025年1月6日 /PRNewswire/ — 微雲全息公司(納斯達克股票代碼:HOLO)(「HOLO」 或 「公司」)今天宣佈推出一種全新的計算模式——數字模擬量子計算(DAQC)。這種模式巧妙地將數字量子計算的靈活性與模擬量子仿真的穩健性相結合,爲量子計算的發展鋪平了新的道路。在這種新興模式下,HOLO正在積極探索並提出了一種專門用於計算量子傅里葉變換的高效數字模擬量子算法。作爲廣泛用於各種相關量子算法的子程序,提高量子傅里葉變換的計算效率和準確性對於量子算法框架的整體發展至關重要。

Based on reasonable assumptions about the noise model, HOLO conducted in-depth research and discovered that as the number of quantum bits involved gradually increases, the fidelity of the Quantum Fourier Transform performed using this digital simulated quantum algorithm can be significantly improved. This achievement is attributed to HOLO's thorough exploration of algorithm development and the effective application of the digital simulated quantum computing paradigm.

基於對噪聲模型的合理假設,HOLO進行了深入的研究,發現隨着所涉及的量子比特數量的逐漸增加,使用這種數字模擬量子算法執行的量子傅里葉變換的保真度可以顯著提高。這一成就歸功於HOLO對算法開發的深入探索以及數字模擬量子計算範式的有效應用。

During the research process, HOLO selected the homogeneous all-to-all (ATA) two-body Ising model as the foundational resource for implementing DAQC and further represented its Hamiltonian as a non-homogeneous ATA two-body Ising model. This approach established a solid theoretical framework for the efficient implementation of the algorithm.

在研究過程中,HOLO選擇了同質全對所有(ATA)兩體伊辛模型作爲實現DAQC的基礎資源,並進一步將其哈密頓模型表示爲非同質ATA兩體伊辛模型。這種方法爲算法的有效實現建立了堅實的理論框架。

To validate the effectiveness and superiority of the algorithm, HOLO conducted extensive numerical simulation experiments. In-depth studies were carried out on quantum devices with 3, 5, 6, and 7 qubits. During the simulation process, a reasonable noise model for interactions was carefully considered and incorporated to ensure that the experimental environment closely resembles real quantum computing scenarios. Additionally, HOLO employed both purely digital methods and the DAQC method to comprehensively test specific families of states. The test results clearly demonstrated that the fidelity between the ideal transformation and the transformation achieved by DAQC improves significantly as the number of qubits increases, outperforming the fidelity provided by purely digital implementations in terms of quality.

爲了驗證該算法的有效性和優越性,HOLO進行了廣泛的數值模擬實驗。對具有 3、5、6 和 7 個量子比特的量子器件進行了深入研究。在仿真過程中,仔細考慮並整合了合理的交互噪聲模型,以確保實驗環境與真實的量子計算場景非常相似。此外,HOLO採用純數字方法和DAQC方法來全面測試特定的州家族。測試結果清楚地表明,隨着量子比特數量的增加,理想變換和DAQC實現的變換之間的保真度顯著提高,在質量方面超過了純數字實現所提供的保真度。

Although the emerging paradigm of digital simulated quantum computing itself has certain sources of noise, it successfully eliminates the errors generated by entangling two-qubit gates. This key feature enables HOLO to overcome the challenges posed by existing technologies in the noisy intermediate-scale quantum (NISQ) era and successfully implement relevant quantum algorithms. This achievement underscores that, in the current NISQ era, hybrid protocols combining digital and simulated quantum computing are highly likely to become a wise and effective approach to achieving "useful quantum supremacy" in the field of quantum computing.

儘管新興的數字模擬量子計算模式本身具有一定的噪聲來源,但它成功地消除了糾纏兩量子比特門所產生的誤差。這一關鍵特性使HOLO能夠克服噪聲中等尺度量子(NISQ)時代現有技術帶來的挑戰,併成功實現相關的量子算法。這一成就突出表明,在當前的NISQ時代,結合數字和模擬量子計算的混合協議極有可能成爲在量子計算領域實現 「有用的量子霸權」 的明智而有效的方法。

HOLO will continue to explore the digital simulated quantum computing paradigm in depth, continuously optimizing related algorithms. The company is dedicated to advancing the practical application and development of quantum computing technology, contributing to the global progress of quantum computing, and laying a solid foundation for collaborating with partners from various sectors to create a brilliant future for quantum computing.

HOLO將繼續深入探索數字模擬量子計算範例,不斷優化相關算法。該公司致力於推進量子計算技術的實際應用和發展,爲量子計算的全球進步做出貢獻,併爲與各行各業的合作伙伴合作創造量子計算的輝煌未來奠定堅實的基礎。

About MicroCloud Hologram Inc.

關於 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. For more information, please visit

MicroCloud致力於爲其全球客戶提供領先的全息技術服務。MicroCloud的全息技術服務包括基於全息技術的高精度全息光探測和測距(「LiDAR」)解決方案、獨有的全息激光雷達點雲算法架構設計、突破性的全息技術全息成像解決方案、全息激光雷達傳感器芯片設計和全息車輛智能視覺技術,爲提供可靠的全息高級駕駛輔助系統(「ADAS」)的客戶提供服務。MicroCloud還爲客戶提供全息數字雙胞胎技術服務,並建立了專有的全息數字雙胞胎技術資源庫。MicroCloud 的全息數字雙胞胎技術資源庫結合使用 MicroCloud 的全息數字雙胞胎軟體、數字內容、空間數據驅動的數據科學、全息數字雲算法和全息 3D 捕獲技術,以三維全息形式捕獲形狀和對象。欲了解更多信息,請訪問

Safe Harbor Statement

安全港聲明

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.

本新聞稿包含1995年《私人證券訴訟改革法》所定義的前瞻性陳述。前瞻性陳述包括有關計劃、目標、目標、戰略、未來事件或業績的陳述,以及基本假設和其他非歷史事實陳述的陳述。當公司使用諸如 「可能」、「將」、「打算」、「應該」、「相信」、「期望」、「預期」、「項目」、「估計」 等不只與歷史問題相關的詞語時,它是在發表前瞻性陳述。前瞻性陳述不能保證未來的業績,涉及風險和不確定性,可能導致實際業績與前瞻性陳述中討論的公司預期存在重大差異。這些陳述受不確定性和風險的影響,包括但不限於以下方面:公司的目標和戰略;公司未來的業務發展;產品和服務的需求和接受度;技術變化;經濟狀況;聲譽和品牌;競爭和定價的影響;政府監管;總體經濟波動;財務狀況和經營業績;全息行業的預期增長以及公司計劃在中國和國際市場的業務狀況公司向美國證券交易委員會(「SEC」)提交的報告(包括公司最近提交的10-k表年度報告和當前的6-k表報告及其後續文件)中包含的任何上述風險和其他風險的依據和假設。出於這些原因,除其他外,提醒投資者不要過分依賴本新聞稿中的任何前瞻性陳述。公司向美國證券交易委員會提交的文件中討論了其他因素,這些文件可在www.sec.gov上進行審查。公司沒有義務公開修改這些前瞻性陳述以反映在本聲明發佈之日之後發生的事件或情況。

SOURCE MicroCloud Hologram Inc.

來源 MicroCloud Hologram Inc.

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