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Measurement of transverse emittance and coherence of double-gate field emitter array cathodes

机译:双栅场发射极阵列阴极横向发射率和相干性的测量

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摘要

Achieving small transverse beam emittance is important for high brightness cathodes for free electron lasers and electron diffraction and imaging experiments. Double-gate field emitter arrays with on-chip focussing electrode, operating with electrical switching or near infrared laser excitation, have been studied as cathodes that are competitive with photocathodes excited by ultraviolet lasers, but the experimental demonstration of the low emittance has been elusive. Here we demonstrate this for a field emitter array with an optimized double-gate structure by directly measuring the beam characteristics. Further we show the successful application of the double-gate field emitter array to observe the low-energy electron beam diffraction from suspended graphene in minimal setup. The observed low emittance and long coherence length are in good agreement with theory. These results demonstrate that our all-metal double-gate field emitters are highly promising for applications that demand extremely low-electron bunch-phase space volume and large transverse coherence.
机译:对于自由电子激光,电子衍射和成像实验的高亮度阴极而言,实现较小的横向束发射非常重要。具有片上聚焦电极的双栅极场致发射器阵列,通过电开关或近红外激光激发进行了研究,已作为阴极与由紫外线激光激发的光电阴极竞争,但是低发射率的实验证明却难以捉摸。在这里,我们通过直接测量光束特性,为具有优化双栅结构的场发射器阵列演示了这一点。此外,我们展示了双栅场发射器阵列的成功应用,以最小的设置观察了来自悬浮石墨烯的低能电子束衍射。观察到的低发射率和长相干长度与理论吻合良好。这些结果表明,我们的全金属双栅场致发射器对于要求极低电子束相空间体积和大横向相干性的应用非常有前途。

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