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MicroAlgo Inc. Develops Quantum Encryption Technology Based on Lattice Cryptography, Integrating into LSQb Algorithm's Process of Information Hiding and Transmission to Achieve Anti-Quantum Attack Strategies Enhancement

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MicroAlgo (NASDAQ: MLGO) announced quantum encryption technology based on lattice cryptography, integrated into its LSQb algorithm for quantum image information hiding and transmission. The process covers quantum image preprocessing, secret information encoding and embedding, lattice-based quantum encryption, and quantum transmission and decryption, targeting enhanced security and stability against quantum attacks.

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AI-generated analysis. Not financial advice.

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News Market Reaction – MLGO

+4.97%
4 alerts
+4.97% News Effect
+3.3% Peak Tracked
-7.5% Trough Tracked
+$4M Valuation Impact
$76.86M Market Cap
0.1x Rel. Volume

On the day this news was published, MLGO gained 4.97%, reflecting a moderate positive market reaction. Argus tracked a peak move of +3.3% during that session. Argus tracked a trough of -7.5% from its starting point during tracking. Our momentum scanner triggered 4 alerts that day, indicating moderate trading interest and price volatility. This price movement added approximately $4M to the company's valuation, bringing the market cap to $76.86M at that time.

Data tracked by StockTitan Argus on the day of publication.

Market Reality Check

Price: $6.02 Vol: Volume 192,443 is 0.16x t...
low vol
$6.02 Last Close
Volume Volume 192,443 is 0.16x the 20-day average of 1,185,658, indicating subdued trading interest ahead of this release. low
Technical Shares at $5.63 are trading below the 200-day moving average of $6.36, and remain far under the $61.50 52-week high.

Peers on Argus

Several peers show significant moves, with names like ALAR up 20.27% and others ...
3 Up 3 Down

Several peers show significant moves, with names like ALAR up 20.27% and others such as ARBE and VHC down around 5–6%. Mixed but sizable moves across 3 up and 3 down peers suggest broader sector volatility around software/AI and security themes.

Common Catalyst Multiple software/AI-related peers, including ALAR with an AI-tagged revenue headline, point to ongoing interest in advanced computing and security software.

Historical Context

5 past events · Latest: May 20 (Positive)
Pattern 5 events
Date Event Sentiment Move Catalyst
May 20 Quantum imaging R&D Positive +33.7% Announced quantum image edge extraction algorithm for noisy images to boost accuracy.
May 14 Quantum circuit design Positive +13.2% Unveiled multi-objective evolutionary algorithm to auto-design optimized quantum circuits.
May 8 VQA optimization tech Positive +1.0% Introduced Quantum Architecture Search to improve VQA robustness and trainability.
May 5 Quantum blockchain design Positive +1.5% Proposed quantum blockchain architecture using QSC and QKD for transaction security.
Apr 30 Query algorithm framework Positive +5.7% Outlined framework for optimal exact quantum query algorithms via SOS representations.
Pattern Detected

Recent quantum technology announcements have consistently been followed by positive 24h price reactions, often double‑digit, indicating strong sensitivity to R&D news.

Recent Company History

Over the past month, MicroAlgo has released a series of quantum-computing related developments. On April 30, it announced an optimal exact quantum query algorithm framework. On May 5, it detailed a quantum blockchain architecture for transaction security. Subsequent updates on May 8, May 14, and May 20 covered Quantum Architecture Search, a multi-objective evolutionary algorithm for quantum circuits, and a quantum image edge extraction algorithm. Each event produced a positive 24-hour move, with several double‑digit gains, underscoring the market’s focus on quantum R&D progress.

Market Pulse Summary

This announcement highlights MicroAlgo’s effort to enhance quantum information security by integrati...
Analysis

This announcement highlights MicroAlgo’s effort to enhance quantum information security by integrating lattice cryptography into its LSQb algorithm for quantum image hiding and transmission. Combined with prior quantum blockchain, imaging, and circuit-design updates over the last month, it extends a consistent R&D narrative. Investors may watch for concrete commercialization steps, revenue contribution, and any further regulatory or financing developments alongside future quantum technology milestones to assess durability of this strategy.

Key Terms

lattice cryptography, quantum image preprocessing, quantum bits, quantum encryption, +1 more
5 terms
lattice cryptography technical
"announced the development of quantum encryption technology based on lattice cryptography, integrating"
Lattice cryptography is a family of encryption techniques that rely on hard math problems based on multidimensional grids (think finding a needle in a dense, high-rise maze) to keep data secure. It matters to investors because these methods are designed to withstand future quantum computers that could break today’s encryption, so companies that adopt or develop lattice-based security may better protect customer data, transactions and intellectual property.
quantum image preprocessing technical
"Quantum Image Preprocessing: Before embedding information into a quantum image, the quantum image"
Quantum image preprocessing uses quantum computing techniques to prepare and clean image data—such as medical scans or satellite photos—before traditional analysis or machine learning. For investors, it matters because it promises faster, more accurate preparation of large, complex image sets (like sharpening or removing noise) which can reduce processing costs, speed product development, and create a competitive advantage, similar to upgrading from a hand-cranked camera darkroom to a high-speed automated photo lab.
quantum bits technical
"secret information is encoded into a sequence of quantum bits and embedded into the least"
A quantum bit, or qubit, is the basic unit of information in a quantum computer that can hold more than just a 0 or 1 at the same time — imagine a spinning coin that isn’t fixed as heads or tails until you look. Qubits also link together in ways that let certain complex problems be explored far faster than with ordinary computers, so investors watch them as a potential source of breakthrough value or disruption in fields like encryption, materials, and drug discovery.
quantum encryption technical
"quantum encryption technology based on lattice cryptography is used to encrypt the quantum image."
Quantum encryption uses principles of quantum physics to create and share secret keys for protecting data so that any attempt to intercept them changes the physical signals and can be detected. Think of it like sending a sealed envelope that reveals if someone tried to peek; for investors, it matters because it promises far stronger protection for communications and transactions, creating demand for new hardware, services, and regulatory shifts in cybersecurity.
quantum error correction technical
"various quantum error correction and redundant encoding techniques are employed to ensure"
Quantum error correction is a set of methods for detecting and fixing mistakes in quantum computers by encoding fragile quantum information across multiple physical parts, much like using multiple copies or checksums to protect a sensitive digital file. For investors, it matters because reliable error correction is a key technical milestone that determines whether quantum machines can scale from experimental devices to practical tools that could disrupt computing, encryption, drug discovery and other industries.

AI-generated analysis. Not financial advice.

SHENZHEN, China, May 28, 2026 /PRNewswire/ -- MicroAlgo Inc. (the "Company" or "MicroAlgo") (NASDAQ: MLGO), today announced the development of quantum encryption technology based on lattice cryptography, integrating into the LSQb algorithm process of information hiding and transmission, achieving enhanced anti-quantum attack strategies. Lattice cryptography possesses high security in the face of quantum attacks, and through this integration, it can provide stronger attack resistance for the LSQb algorithm, ensuring the security of information in complex quantum computing environments.

Lattice cryptography is a cryptographic method based on mathematical lattice structures, possessing the unique advantage of maintaining high security in quantum computing environments. By combining lattice cryptography with the LSQb algorithm, MicroAlgo aims to build a more secure and reliable quantum information hiding and transmission system.

Quantum Image Preprocessing: Before embedding information into a quantum image, the quantum image undergoes preprocessing. This step includes denoising, enhancement, and format conversion of the image to ensure the accuracy and reliability of subsequent information embedding. Through advanced quantum image processing techniques, key features of the quantum image are extracted, providing strong support for subsequent information hiding and transmission.

Secret Information Encoding and Embedding: After preprocessing is completed, the secret information is encoded into a sequence of quantum bits and embedded into the least significant quantum bits of the quantum image using the LSQb algorithm. In this process, the superposition and entanglement properties of quantum bits are fully utilized to achieve efficient information hiding. Meanwhile, to ensure the security of the information, complex encoding and embedding strategies are adopted to prevent information leakage or tampering during transmission.

Quantum Encryption Based on Lattice Cryptography: After embedding the information into the quantum image, quantum encryption technology based on lattice cryptography is used to encrypt the quantum image. This step aims to further enhance the security of the information, preventing unauthorized access and leakage. The adopted lattice cryptography algorithm possesses a high degree of complexity and unpredictability, capable of resisting various quantum attack methods. Through this encryption process, the security and reliability of the quantum image during transmission are ensured.

Quantum Information Transmission and Decryption: After encryption is completed, the quantum image is transmitted to the target node via a quantum network. During the transmission process, various quantum error correction and redundant encoding techniques are employed to ensure the integrity and reliability of the information. After the target node receives the quantum image, the corresponding decryption algorithm is used to decrypt the quantum image, thereby recovering the original secret information.

From the perspective of security, lattice cryptography provides it with strong resistance to quantum attacks. In the face of potential threats from quantum computers, traditional encryption algorithms may be vulnerable, but lattice cryptography, with its complex mathematical structure, can effectively resist attacks and ensure information security. Compared to the standalone LSQb algorithm, the integrated technology achieves a qualitative leap in security.

In terms of stability, the error-correcting capability of lattice cryptography makes information transmission more stable. Even when subjected to disturbances such as quantum channel noise, it can ensure the accurate transmission of information. This advantage makes the technology more reliable in practical applications, ensuring secure information transmission in both laboratory environments and complex real-world scenarios.

In the field of quantum network security, MicroAlgo's technology can be used to build more secure quantum information hiding and transmission systems. By embedding secret information into quantum images and encrypting them using quantum encryption technology based on lattice cryptography, secure transmission of information in quantum networks can be ensured. This application is of great significance for protecting sensitive information and preventing information leakage.

In the future, as quantum computing technology continues to develop and improve, MicroAlgo's technology will integrate with other quantum information technologies to form a more comprehensive quantum information processing system. Such a system will not only have higher security and reliability but also possess stronger computational capabilities and processing speeds.

About MicroAlgo Inc.
MicroAlgo Inc. (the "MicroAlgo"), a Cayman Islands exempted company, is dedicated to the development and application of bespoke central processing algorithms. MicroAlgo provides comprehensive solutions to customers by integrating central processing algorithms with software or hardware, or both, thereby helping them to increase the number of customers, improve end-user satisfaction, achieve direct cost savings, reduce power consumption, and achieve technical goals. The range of MicroAlgo's services includes algorithm optimization, accelerating computing power without the need for hardware upgrades, lightweight data processing, and data intelligence services. MicroAlgo's ability to efficiently deliver software and hardware optimization to customers through bespoke central processing algorithms serves as a driving force for MicroAlgo's long-term development.

Forward-Looking Statements
This press release contains statements that may constitute "forward-looking statements." Forward-looking statements are subject to numerous conditions, many of which are beyond the control of MicroAlgo, including those set forth in the Risk Factors section of MicroAlgo's periodic reports on Forms 10-K and 8-K filed with the SEC. Copies are available on the SEC's website, www.sec.gov. Words such as "expect," "estimate," "project," "budget," "forecast," "anticipate," "intend," "plan," "may," "will," "could," "should," "believes," "predicts," "potential," "continue," and similar expressions are intended to identify such forward-looking statements. These forward-looking statements include, without limitation, MicroAlgo's expectations with respect to future performance and anticipated financial impacts of the business transaction.

MicroAlgo undertakes no obligation to update these statements for revisions or changes after the date of this release, except as may be required by law.

Cision View original content:https://www.prnewswire.com/news-releases/microalgo-inc-develops-quantum-encryption-technology-based-on-lattice-cryptography-integrating-into-lsqb-algorithms-process-of-information-hiding-and-transmission-to-achieve-anti-quantum-attack-strategies-enhancement-302784683.html

SOURCE MicroAlgo Inc.

FAQ

What quantum encryption technology did MicroAlgo (NASDAQ: MLGO) announce on May 28, 2026?

MicroAlgo announced a quantum encryption technology based on lattice cryptography integrated with its LSQb algorithm. According to MicroAlgo, this combination aims to strengthen quantum image information hiding and transmission security in complex quantum computing environments by improving resistance to potential quantum attacks.

How does MicroAlgo's LSQb algorithm use lattice cryptography to enhance quantum attack resistance for MLGO?

MicroAlgo combines lattice cryptography with the LSQb algorithm to encrypt quantum images after data embedding. According to MicroAlgo, lattice cryptography’s complex mathematical structure helps provide stronger resistance to quantum attacks, supporting secure information hiding and transmission across quantum networks.

What are the main steps in MicroAlgo's quantum image information hiding process using the LSQb algorithm?

MicroAlgo’s process includes quantum image preprocessing, secret information encoding, LSQb-based embedding, lattice-based encryption, then transmission and decryption. According to MicroAlgo, these stages use quantum denoising, error correction, and redundant encoding to maintain information accuracy, integrity, and security during quantum network transmission.

Why is lattice cryptography important for MicroAlgo's anti-quantum attack strategy with MLGO?

Lattice cryptography is important because it maintains high security in quantum computing environments. According to MicroAlgo, integrating lattice cryptography with LSQb offers strong resistance to potential quantum computer attacks, supporting secure quantum information hiding and transmission compared with traditional encryption approaches.

How could MicroAlgo's lattice-based quantum encryption impact quantum network security?

MicroAlgo’s technology could support building more secure quantum information hiding and transmission systems for quantum networks. According to MicroAlgo, embedding secret data in quantum images and encrypting them with lattice-based quantum encryption helps protect sensitive information and reduce leakage risks during quantum network communication.

What future developments does MicroAlgo foresee for its quantum encryption and LSQb technologies?

MicroAlgo expects its encryption and LSQb technologies to integrate with other quantum information technologies over time. According to MicroAlgo, this evolution may form a more comprehensive quantum information processing system with higher security, reliability, and potentially stronger computational and processing capabilities.