{ "title": "量子计算入门", "subtitle": "三分钟了解量子计算的基本原理", "summary": "本视频介绍量子比特、叠加态和量子纠缠三个核心概念,面向零基础观众。", "cover": { "imagePath": "./assets/cover-bg.jpg", "keyframes": [ { "type": "text", "content": "量子计算入门" }, { "type": "highlight", "content": "2025 科普系列" } ] }, "scenes": [ { "id": "scene-1", "title": "什么是量子比特", "narration": "经典计算机使用 0 和 1 来表示信息,而量子计算机使用量子比特。量子比特可以同时处于 0 和 1 的叠加状态,这让量子计算机拥有了指数级的计算潜力。", "duration": 8, "speed": 1.0, "layoutHint": "centered", "images": [ { "path": "./assets/qubit-diagram.png" } ], "keyframes": [ { "type": "text", "content": "经典比特 vs 量子比特", "timeOffset": 0.5 }, { "type": "highlight", "content": "叠加态", "timeOffset": 3.0 } ] }, { "id": "scene-2", "narration": "叠加态是量子计算的核心特性。一个量子比特可以同时表示多种状态,当多个量子比特组合时,它们能同时探索所有可能的计算路径。", "duration": 10, "layoutHint": "bullet-list", "keyframes": [ { "type": "text", "content": "叠加态:同时处于多种状态", "timeOffset": 0 }, { "type": "text", "content": "多比特组合 = 指数级并行", "timeOffset": 4 } ] }, { "id": "scene-3", "narration": "量子纠缠则是一种神奇的现象。当两个粒子纠缠在一起时,测量其中一个粒子,就能立即知道另一个粒子的状态,无论它们相距多远。", "layoutHint": "centered", "images": [ { "query": "quantum entanglement illustration" } ] } ], "outro": { "text": "感谢观看", "narration": "关注我们,了解更多前沿科技", "cta": "点赞 · 关注 · 转发" }, "globalStyle": { "tone": "calm", "pace": "normal", "targetDuration": 30 } }