首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Fast synchrotron and FEL beam monitors based on single-crystal diamond detectors and InGaAs/InAlAs quantum well devices
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Fast synchrotron and FEL beam monitors based on single-crystal diamond detectors and InGaAs/InAlAs quantum well devices

机译:基于单晶金刚石探测器和InGaAs / InAlAs量子阱器件的快速同步加速器和FEL光束监测器

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摘要

Simultaneous photon-beam position and intensity monitoring is becoming of increasing importance for new-generation synchrotron radiation sources and free-electron lasers (FEL). Thus, novel concepts of beam diagnostics are required in order to keep such beams under control. From this perspective diamond is a promising material for the production of semitransparent in situ photon beam monitors, which can withstand the high dose rates occurring in such radiation facilities. Here, we report on the development of freestanding, single-crystal chemical-vapor-deposited diamond detectors with segmented electrodes. Due to their direct, low-energy band gap, InGaAs quantum well devices operated at room temperature may also be used as fast detectors for photons ranging from visible to X-ray. These features are valuable in low-energy and time-resolved FEL applications. In particular, a novel segmented InGaAs/InAlAs device has been developed and will be discussed. Dedicated measurements carried out on both these devices at the Elettra Synchrotron show their capability to monitor the position and the intensity of the photon beam with bunch-by-bunch temporal performances. Furthermore, preliminary tests have been performed on diamond detectors at the Fermi FEL, extracting quantitative intensity and position information for 100-fs-wide FEL pulses with a photon energy of 28.8 eV.
机译:对于新一代同步加速器辐射源和自由电子激光器(FEL),同时进行光子束位置和强度监视变得越来越重要。因此,需要光束诊断的新颖概念,以便将这种光束保持在控制之下。从这个角度来看,金刚石是生产半透明原位光子束监测器的有前途的材料,它可以承受这种辐射设备中出现的高剂量率。在这里,我们报道了具有分段电极的独立式单晶化学气相沉积金刚石探测器的发展。由于其直接的低能带隙,在室温下运行的InGaAs量子阱器件也可以用作从可见光到X射线的光子的快速检测器。这些功能在低能耗和时间分辨的FEL应用中很有价值。特别地,已经开发了新颖的分段式InGaAs / InAlAs器件,并将对其进行讨论。在Elettra Synchrotron上对这两种设备进行的专门测量表明,它们具有以逐串的临时性能监视光子束的位置和强度的能力。此外,已经在费米FEL的金刚石探测器上进行了初步测试,提取了100 fs宽FEL脉冲的定量强度和位置信息,光子能量为28.8 eV。

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