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Field Assisted Photoemission from Nanocrystalline Diamond and Diamond Field Emitter Arrays

机译:纳米晶金刚石和钻石场发射极阵列的现场辅助照片

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Field emission from nanocrystalline diamond and especially from diamond field emitters is known to have an onset at low electric fields of a few MV/m, although the discussion on the agreement of the results with the classical Fowler-Nordheim model is still pending. While measurements of pure photoemission from flat nanocrystalline diamond agree reasonably well with the 3-step photoemission model for the wide bandgap semiconductor with low electron affinity, we are not aware of systematic studies of photoemission in the ~0.1-5 MV/ m range, where the electron emission mechanism is expected to be affected by the Schottky effect and crossover with the field emission. In order to understand applicability of field enhanced photoemission from diamond to generation of bright coherent photo-gated electron beams suitable for dielectric laser accelerators, we have designed a system to measure spectral response (quantum efficiency vs wavelength) of ~mm-sized samples with up to 5 MV/ m electric field in the anode-cathode gap. The system is based on an incoherent Xe lamp-based tunable ultaviolet light source, therefore relatively large and dense diamond field emitter arrays are required for comparative studies of arrays versus flat nanocrystalline diamond samples. We present the results of our original measurements in the range between 195 nm and 270 nm. Potential schemes of laser-triggered photoemission from a single diamond field emitter tip are discussed in view of the obtained results.
机译:纳米晶金刚石的场发射,特别是来自金刚石场发射器的场发射,在几MV / m的低电场上具有发作,尽管讨论了与经典福勒 - 诺德海姆模型的结果达成了待审议。虽然来自扁平纳米晶钻石的纯光扫描的测量结果非常良好地与具有低电子亲和力的宽带隙半导体的3步光缩放模型,但我们不了解〜0.1-5 mV / m范围内的光曝光的系统研究预计电子发射机构受到肖特基效应和与场发射的交叉影响的影响。为了了解来自钻石的磁场增强的光曝光的适用性,以产生适用于介电激光加速器的明亮相干光栅电子束,我们设计了一种系统,用于测量〜mm大小的样品的频谱响应(量子效率Vs波长)在阳极 - 阴极间隙中的5 mV / m电场。该系统是基于非相干氙基于灯的可调ultaviolet光源,需要用于与阵列平面纳米金刚石样品的比较研究发射器阵列因此相对大的和密集的金刚石场。我们在195纳米和270nm之间的范围内提出了我们原始测量结果的结果。考虑到所获得的结果,讨论了来自单个金刚石场发射极尖端的激光触发光曝光的潜在方案。

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