这是对光波的直接测量
E Goulielmakis1, M Uiberacker, R Kienberger
1Institut für Photonik, Technische Universität Wien, Gusshausstrasse 27, A-1040 Wien, Austria.
概括
科学家直接观察可见光的电磁场,使用250亚秒的电子爆发. 这一突破使得超宽带光波形的完整表征和受控合成成为可能.
科学领域:
- * 物理与光学
- * 超快速科学 * 超快速科学
- * 亚特秒科学 * 亚特秒科学
背景情况:
- *可见光包括电磁场,其振荡频率约为10^15 Hz.
- *现有的仪器可以检测光的振幅和频率,但不能检测光场动态.
- * 对光场演变的直接观测一直是一个重大挑战.
研究的目的:
- * 直接观察电磁场在几周期可见激光脉冲中的积累和衰减.
- * 开发一种方法来完全表征超短光波形.
- * 为了实现超宽带光的可控和可重复的合成.
主要方法:
- *使用250亚秒电子爆发探测光场变化.
- *利用每秒电子脉冲来解决超快场动态.
- * 开发一种用于高分辨率光波形状特征的装置.
主要成果:
- * 在几周期激光脉冲内直接观察电磁场的演变.
- *成功描述了电场强度在每秒的时间尺度上的变化.
- * 展示了一种能够分析可见光,紫外线和红外线光谱中的少数周期波的装置.
结论:
- * 直接现场观测为光-物质相互作用提供了前所未有的洞察力.
- * 研发的装置能够对短周期光脉冲进行完整的表征.
- * 这种技术为合成定制超宽带光波形式的先进应用开辟了新的途径.
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