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English(EN) How do you photograph a 100-femtosecond chemical reaction and the minutes-long shockwave that follows in a single frame? Traditional high-speed cameras force sc

新技术相机捕捉飞秒级反应和持续数分钟的冲击波

东京大学的研究人员开发了一种名为BRIDGE 的新型光学技术,该技术可以在单帧内同时捕捉极快和极慢的事件。这项创新克服了传统高速相机的局限性,传统相机通常需要在捕捉短暂的快速现象或较长的慢速过程之间进行选择。BRIDGE 利用对数捕获间隔来映射整个物理周期,使科学家能够可视化诸如100飞秒化学反应以及持续数分钟的冲击波等现象。 AI

影响 为复杂物理过程提供了新的科学可视化技术。

排序理由 该条目描述了大学研究团队开发的一项新技术。[lever_c_demoted from research: ic=1 ai=0.1]

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新技术相机捕捉飞秒级反应和持续数分钟的冲击波

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该条目描述了大学研究团队开发的一项新技术。[lever_c_demoted from research: ic=1 ai=0.1]
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  1. Mastodon — mastodon.social TIER_1 English(EN) · asiaai ·

    如何在一帧中拍下 100 飞秒的化学反应及其后续持续数分钟的冲击波?传统高速相机迫使

    How do you photograph a 100-femtosecond chemical reaction and the minutes-long shockwave that follows in a single frame? Traditional high-speed cameras force scientists to choose between speed and duration. Now, University of Tokyo researchers have solved this trade-off with "BRI…