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A tunable photo-electric co-excited point electron source: low-intensity excitation emission and structure-modulated spectrum-selection

机译:一种可调谐光电共激发点电子源:低强度激发发射和结构调制光谱选择

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摘要

The development of a point electron source requires an efficient excitation mode with low energy consumption, flexible tunability, and high performance. In particular for traditional electron emission cathode materials, it is necessary to expand the function of this aspect to meet application demands in many emerging fields. In this study, we propose a photo-electric co-excited scheme to drive a tungsten (W) needle nano-cold-cathode. The developed W needle cathode has been demonstrated to show electron emission performance with a narrow energy spread of 0.76 eV and a high brightness of 4 × 109 A m−2 sr−1 V−1. This could be achieved through low-intensity co-excitation, including an electrostatic field below ∼0.5 V μm−1 and a laser intensity at ∼10 W cm−2 level. Based on this co-excitation, the electron emission further exhibited a tunable property relative to the intrinsic properties of the incident light, such as optical frequency and polarization, which is shown to be directly modulated by the structure of the W needle nano-cold-cathode. This work provides a choice to achieve tunable, miniaturized and integrated vacuum micro- and nano-electronic devices.
机译:点电子源的发展需要较低的一种有效的激励方式能源消耗、灵活的可调谐性和高表演电子发射阴极材料,它是需要扩大这方面的功能在许多新兴满足应用的要求字段。光电co-excited计划来驱动钨针nano-cold-cathode (W)。开发W针阴极已经证明显示的电子发射性能窄0.76 eV和高的能量分散老亮度4×109 m−2−1 V−1。是通过低强度co-excitation,包括一个静电场低于∼0.5 Vμm−1和激光强度在∼10 W厘米−2水平。基于这个co-excitation,电子排放进一步表现出一个可调属性相对于内在的属性入射光,如光学频率和极化,直接显示调制结构的W针nano-cold-cathode。实现可调、小型化和集成真空微纳电子设备。

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