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A hierarchical approach for modelling X-ray beamlines. Application to a coherent beamline

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arxiv 1906.07100 v1 pith:LVGZEKQQ submitted 2019-06-17 physics.optics physics.ins-det

A hierarchical approach for modelling X-ray beamlines. Application to a coherent beamline

classification physics.optics physics.ins-det
keywords beamlinebeamcoherencecoherentx-raydifferentemittanceflux
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We consider different approaches to simulate a modern X-ray beamline. Several methodologies with increasing complexity are applied to discuss the relevant parameters that quantify the beamline performance. Parameters such as flux, dimensions and intensity distribution of the focused beam and coherence properties are obtained from simple analytical calculations to sophisticated computer simulations using ray-tracing and wave optics techniques. A latest-generation X-ray nanofocusing beamline for coherent applications (ID16A at the ESRF) has been chosen to study in detail the issues related to highly demagnifying synchrotron sources and exploiting the beam coherence. The performance of the beamline is studied for two storage rings: the old ESRF-1 (emittance 4000~pm) and the new ESRF-EBS (emittance 150~pm). In addition to traditional results in terms of flux and beam sizes, an innovative study on the partial coherence properties based on the propagation of coherent modes is presented. The different algorithms and methodologies are implemented in the software suite OASYS. Those are discussed with emphasis placed upon the their benefits and limitations of each.

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