Technology
WiMi's Lays out for the Research on Distributed Quantum Computing Based on Cross-Optical Network Links
WiMi Hologram Cloud Inc. (NASDAQ: WiMi) ("WiMi" or the "Company"), a leading global Hologram Augmented Reality ("AR") Technology provider, today announced that they are orchestrating the research on distributed quantum computing based on cross-optical network links. Distributed quantum computing (DQC) connects multiple quantum processors to form a powerful computing network, further expanding the scale and application scope of quantum computing. Optical network links play a crucial role in reali
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[{"type":"text","content":"BEIJING, Sept. 29, 2025 /PRNewswire/ -- WiMi Hologram Cloud Inc. (NASDAQ: WiMi) ("WiMi" or the "Company"), a leading global Hologram Augmented Reality ("AR") Technology provider, today announced that they are orchestrating the research on distributed quantum computing based on cross-optical network links. Distributed quantum computing (DQC) connects multiple quantum processors to form a powerful computing network, further expanding the scale and application scope of quantum computing. Optical network links play a crucial role in realizing distributed quantum computing, providing a reliable physical channel for the efficient transmission of quantum information between different nodes.","length":727,"tagName":"p"},{"type":"text","content":"The optical network link performs information transmission based on the properties of photons. Photons possess characteristics such as high speed, low loss, and excellent quantum properties, making them ideal carriers for quantum information transmission. In cross-optical network links, quantum information is encoded in the quantum states of photons, such as polarization states, phase states, etc. Through carefully designed optical communication systems, these photons carrying quantum information can be transmitted over long distances in optical fibers or free space.","length":573,"tagName":"p"},{"type":"text","content":"Compared with traditional electrical signal transmission, optical network links have numerous advantages in distributed quantum computing. Firstly, the transmission speed of optical signals approaches the speed of light, significantly reducing the latency of quantum information during transmission, which is crucial for distributed quantum computing that requires real-time synchronization and collaboration. Secondly, the low-loss characteristics of optical fibers enable quantum information to maintain high fidelity over long-distance transmission. Application scenarios in distributed quantum computing include quantum key distribution, distributed quantum simulation, and quantum cloud computing, among others.","length":716,"tagName":"p"},{"type":"text","content":"Quantum Key Distribution (QKD) is an important application scenario in distributed quantum computing. Through cross-optical network links, different nodes can securely share quantum keys...