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MicroCloud Hologram Inc. Proposes Multi-Qubit Quantum State Sharing Scheme: Sharing Multiple Quantum Information in One Operation

MicroCloud Hologram Inc. Proposes Multi-Qubit Quantum State Sharing Scheme: Sharing Multiple Quantum Information in One Operation

Yahoo11-07-2025
SHENZHEN, China, July 10, 2025 /PRNewswire/ -- MicroCloud Hologram Inc. (NASDAQ: HOLO), ("HOLO" or the "Company"), a technology service provider, announced the proposed multi-qubit quantum state sharing scheme, which, through an innovative "one-time distribution + one-time recycle" mechanism, achieves the collaborative recovery of multiple multi-qubit states among participants, providing a new paradigm for the efficient utilization of quantum resources. The scheme takes quantum entanglement encoding as the core, combining single-particle measurement and data collaborative processing to construct a complete technical chain from state preparation to reconstruction.
The core process of the scheme can be likened to "quantum information express delivery": first, the dealer "packages" the target quantum state into a special entangled state, distributes it to participants through quantum channels, and then collaboratively reconstructs the original state based on local measurement data. Specifically, the dealer encodes \(m\) number of \(k\)-qubit states into a hyper-entangled state of \(n=mí—k\) particles, for example, utilizing multidimensional properties such as polarization and path of photons to construct a "quantum express box," with each sub-entangled state carrying specific qubit information. After completing the encoding through quantum gate operations, the particles are distributed to participants, who obtain local data through generalized measurements and projective measurements. Finally, the dealer reconstructs the original state using a maximum likelihood estimation algorithm, with a fidelity exceeding 90% deemed successful.
HOLO's technological innovation is reflected in three dimensions: first, the hyper-entangled state multiplexing technology breaks through the traditional single-state single-resource limitation, utilizing the multidimensional degrees of freedom of particles to enable a single photon to carry 3 qubits of information, improving resource efficiency by 3 times; second, the adaptive measurement strategy dynamically selects measurement bases, reducing the number of measurements by 30% and errors to 1/5 of random measurements, significantly enhancing data collection efficiency; third, the distributed reconstruction algorithm allocates the multi-state revivification task to multiple computing nodes, making processing time increase linearly with the number of states, avoiding the exponential complexity bottleneck of traditional centralized algorithms.
The scheme successfully realized the simultaneous sharing of 2 3-qubit GHZ states in a photonic system, reducing the usage of entangled particles by 50%, decreasing classical communication volume by 40%, and maintaining a fidelity above 85% even under a 1% channel error rate. However, the practical implementation of the technology still faces challenges: the automated preparation of high-dimensional entangled states, the demand for femtosecond-level timing synchronization precision, and the bandwidth limitations of quantum-classical interfaces. Future development will focus on solid-state quantum system integration, quantum machine learning optimization algorithms, and metropolitan-scale quantum relay network deployment, promoting the scheme from laboratory to practical application.
HOLO's research reveals the universal law of the quantum Zeno effect in controlling continuous state tunneling, and its technical framework not only provides a standardized solution for quantum dot isolation but also pioneers a new paradigm of "measurement-material-device" collaborative design. With further maturation of the technology, this achievement is expected to advance quantum computing from proof-of-principle to engineering applications, laying a critical foundation for building scalable quantum information processing platforms.
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. 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.
View original content:https://www.prnewswire.com/news-releases/microcloud-hologram-inc-proposes-multi-qubit-quantum-state-sharing-scheme-sharing-multiple-quantum-information-in-one-operation-302502308.html
SOURCE MicroCloud Hologram Inc.
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iPhone 17 Pro: Every New Feature We Know
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The iPhone 17 lineup may be the last to follow this fall-release model. Starting with the iPhone 18, Apple will reportedly split its phone releases so that lower-cost iPhones launch in the first half of the year and the higher-end Pro models become available later in the year. But that isn't expected to happen until 2026 so you can likely still expect the iPhone 17 Pro to become available this fall. Preorders for a new iPhone typically begin the Friday after the announcement, with the phone shipping a week later. Based on the expected announcement on Sept. 3 or 9, the preorder date could be either Sept. 5 or 12. Tariffs could raise the price, but there are other factors Trump has raised, lowered and paused tariffs a dizzying number of times since February, all of which could affect the cost of the iPhone 17 Pro. Apple, which says it could move much of US iPhone production from China to India, has escaped many of the tariff hikes thanks to a reciprocal tariff exemption list that includes many phones, laptops and other electronics that Apple produces. However, all the reprieves appear to be temporary so reciprocal tariffs could still affect prices by the time the iPhone 17 is released. Trump threatened Apple with a 25% tariff on all iPhones made outside the country in a social media post on May 23. Later that day, he said that all smartphones -- not just iPhones -- would be hit with the 25% tariff by the end of June if they don't move operations to the US. Regardless of how tariffs play out, Apple plans to raise iPhone prices later this year, The Wall Street Journal reported. Apple apparently plans to ascribe the price increase to better features and design costs so it can avoid pointing the finger at tariffs and incurring the wrath of Trump (like Amazon temporarily did). Holland points out that the iPhone is overdue for a price bump. He noted that Apple has never increased the price for an iPhone Pro ($999) since the iPhone X was first introduced in 2017. So yes, you should expect to pay more for the iPhone 17, regardless of tariffs. Read more: Thinking About Buying a New iPhone? Here's Why You Should Wait Are new iPhone rumors and leaks to be trusted? Here's the part where I come in and say: Everything's a rumor until Apple officially releases the next iPhone. Rumors and speculation leading up to the iPhone's release are often based on insider knowledge or leaked information from teams working on the iPhone's designs, but those designs are works in progress -- not necessarily the final product.

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