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The granulated gold film - based semitransparent photocathodes in the visible spectrum range for femtosecond time-resolution experiments

机译:用于飞秒时间分辨率实验的可见光谱范围内的粒状金膜的半透明光阴离子

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Developed is the granulated, Au film-based, semitransparent photocathode consisting of spherical Au nanoparticles. The granulated Au films are activated by a thin layer of cesium and oxygen of about two monolayer thicknesses to decrease the work function down to about 1 eV and gain the photoemission effect in the visible spectrum range. The sensitivity maximum equal to about one mA/W is located in the green spectrum range. The nanoparticles formation and photocathode surface structure are studied with the use of the X-ray photoelectron spectroscopy technique. Those studies have shown that the photoemission effect in the wavelength range λ > 450 nm is conditioned by excitation of the surface plasmons in quasi-spherical Au nanoparticles. This has allowed manufacturing of a streak tube with the introducible, Au nanoparticles-based photocathode, stability of which has been remaining invariant.
机译:开发的是由球形Au纳米颗粒组成的颗粒状的基于Au薄膜的半透明光阴离子。 颗粒状的Au膜由薄层铯和约两种单层厚度的氧气激活,以将工作函数降低至约1eV并在可见光谱范围内获得光敏效应。 最大值等于约1 mA / W的灵敏度位于绿色光谱范围内。 利用X射线光电子能谱技术研究了纳米颗粒形成和光电阴极表面结构。 这些研究表明,波长范围λ> 450nm中的光曝光效应是通过在准球形Au纳米颗粒中的表面等离子体的激发来调节。 这使得用涂覆的Au纳米粒子的光电阴极制造条纹管,其稳定性是剩余的不变。

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