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Liquid-metal-jet X-ray technology for nanoelectronics characterization and metrology

机译:液态金属喷射X射线技术用于纳米电子学表征和计量

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Front end X-ray metrology applications based on diffraction, scattering or fluorescence such as HRXRD, XRR, CD-SAXS or μXRF rely heavily on the x-ray source brightness for metrology throughput and accuracy. Similarly, high end X-ray imaging applications such as X-ray microscopy (XRM) normally applied in the back end of line also share the same fundamental limitation from the x-ray source. Traditional x-ray sources use static or rotating solid anodes and are therefore typically limited in brightness by when the e-beam power density melts the anode. The invention of the liquid-metal-jet technology has recently overcome this limitation by using an anode that is already in the molten state. The unprecedented brightness achievable by MetalJet sources, which is in the range of one order of magnitude above current state-of-the art solid sources, enable these sources to be readily introduced into high-end metrology applications. This communication will review the status of the metal-jet x-ray source technology specifically in terms of stability, lifetime, flux and brightness relating to specific SEMI metrology applications. It will also discuss details of the liquid-metal-jet technology with a focus on scalability and future improvements.
机译:基于衍射,散射或荧光的前端X射线计量学应用(例如HRXRD,XRR,CD-SAXS或μXRF)在很大程度上依赖于X射线源的亮度以实现计量吞吐量和准确性。同样,通常在生产线后端使用的高端X射线成像应用程序(例如X射线显微镜(XRM))也具有与X射线源相同的基本限制。传统的X射线源使用静态或旋转的固态阳极,因此通常受电子束功率密度熔化阳极时亮度的限制。液态金属喷射技术的发明最近通过使用已经处于熔融状态的阳极克服了该限制。 MetalJet光源可达到前所未有的亮度,其亮度比当前最先进的固态光源高一个数量级,从而使这些光源易于引入高端计量应用中。此次交流将就与特定SEMI计量学应用有关的稳定性,寿命,光通量和亮度方面来审查金属喷射X射线源技术的状态。它还将讨论液态金属喷射技术的细节,重点是可伸缩性和未来的改进。

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