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Laser-powered dielectric-structures for the production of high-brightness electron and x-ray beams

机译:激光供电的介电结构,用于产生高亮度电子和X射线束

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Laser powered accelerators have been under intensive study for the past decade due to their promise of high gradients and leveraging of rapid technological progress in photonics. Of the various acceleration schemes under examination, those based on dielectric structures may enable the production of relativistic electron beams in breadbox sized systems. When combined with undulators having optical-wavelength periods, these systems could produce high brilliance x-rays which find application in, for instance, medical and industrial imaging. These beams also may open the way for table-top atto-second sciences. Development and testing of these dielectric structures faces a number of challenges including complex beam dynamics, new demands on lasers and optical coupling, beam injection schemes, and fabrication. We describe one approach being pursued at UCLA-the Micro Accelerator Platform (MAP). A structure similar to the MAP has also been designed which produces periodic deflections and acts as an undulator for radiation production, and the prospects for this device will be considered. The lessons learned from the multi-year effort to realize these devices will be presented. Challenges remain with acceleration of sub-relativistic beams, focusing, beam phase stability and extension of these devices to higher beam energies. Our progress in addressing these hurdles will be summarized. Finally, the demands on laser technology and optical coupling will be detailed.
机译:过去十年来,由于激光加速器具有高梯度的前景,并利用光子学中的快速技术进步,因此一直在深入研究。在正在研究的各种加速方案中,那些基于介电结构的加速方案可以在面包箱大小的系统中产生相对论电子束。当与具有光波长周期的波荡器结合使用时,这些系统可以产生高亮度的X射线,这些X射线可用于例如医学和工业成像。这些光束也可能为台式亚秒级科学开辟道路。这些介电结构的开发和测试面临许多挑战,包括复杂的射束动力学,对激光器和光耦合的新要求,射束注入方案以及制造。我们描述了一种在UCLA上追求的方法-微型加速器平台(MAP)。还设计了类似于MAP的结构,该结构会产生周期性的偏转并充当产生辐射的波状起伏器,因此将考虑该设备的前景。将介绍从实现这些设备的多年努力中汲取的经验教训。亚相对论光束的加速,聚焦,光束相位稳定性以及将这些设备扩展到更高的光束能量仍然是挑战。我们将总结我们在解决这些障碍方面的进展。最后,将详细介绍对激光技术和光耦合的要求。

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