飞秒
激光器
红外线的
谐波
光学
X射线
物理
材料科学
光电子学
量子力学
电压
作者
Tenio Popmintchev,Ming-Chang Chen,Dimitar Popmintchev,P. Arpin,Susannah Brown,S. Ališauskas,G. Andriukaitis,Tadas Balčiūnas,Oliver D. Mücke,A. Pugžlys,Andrius Baltuška,Bonggu Shim,Samuel E. Schrauth,Alexander L. Gaeta,Carlos Hernández-García,Luis Plaja,Andreas Becker,Agnieszka Jaroń-Becker,Margaret M. Murnane,Henry C. Kapteyn
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2012-06-07
卷期号:336 (6086): 1287-1291
被引量:1647
标识
DOI:10.1126/science.1218497
摘要
High-harmonic generation (HHG) traditionally combines ~100 near-infrared laser photons to generate bright, phase-matched, extreme ultraviolet beams when the emission from many atoms adds constructively. Here, we show that by guiding a mid-infrared femtosecond laser in a high-pressure gas, ultrahigh harmonics can be generated, up to orders greater than 5000, that emerge as a bright supercontinuum that spans the entire electromagnetic spectrum from the ultraviolet to more than 1.6 kilo-electron volts, allowing, in principle, the generation of pulses as short as 2.5 attoseconds. The multiatmosphere gas pressures required for bright, phase-matched emission also support laser beam self-confinement, further enhancing the x-ray yield. Finally, the x-ray beam exhibits high spatial coherence, even though at high gas density the recolliding electrons responsible for HHG encounter other atoms during the emission process.
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