The chemRIXS Instrument for the LCLS-II X-Ray Free Electron Laser
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arXiv
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| Main Authors: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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| Format: | Preprint |
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2026
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| _version_ | 1866915895525244928 |
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| author | Hoffman, David J. Garratt, Douglas Bain, Matthew Hampton, Christina Y. Poulter, Benjamin I. Joshi, Jyoti Coslovich, Giacomo O'Dowd, Frank P. DePonte, Daniel P. Reid, Alexander H. Shen, Lingjia Jost, Daniel Bionta, Mina R. Turner, Joshua J. Lin, Ming-Fu Heimann, Philip Moeller, Stefan P. Koralek, Jake D. Johnson, Tyler Ninh, K Almeida, Raybel Berges, Adam Fung, Stephanie Li, Shuai Pelimanni, Eetu Nimmrich, Amke Khalil, Munira Young, Linda Wolf, Thomas J. A. Kunnus, Kristjan Dakovski, Georgi L. |
| author_facet | Hoffman, David J. Garratt, Douglas Bain, Matthew Hampton, Christina Y. Poulter, Benjamin I. Joshi, Jyoti Coslovich, Giacomo O'Dowd, Frank P. DePonte, Daniel P. Reid, Alexander H. Shen, Lingjia Jost, Daniel Bionta, Mina R. Turner, Joshua J. Lin, Ming-Fu Heimann, Philip Moeller, Stefan P. Koralek, Jake D. Johnson, Tyler Ninh, K Almeida, Raybel Berges, Adam Fung, Stephanie Li, Shuai Pelimanni, Eetu Nimmrich, Amke Khalil, Munira Young, Linda Wolf, Thomas J. A. Kunnus, Kristjan Dakovski, Georgi L. |
| contents | The chemRIXS instrument at the Linac Coherent Light Source offers new opportunities for studying solution-phase systems with time-resolved soft X-ray spectroscopy through the recently commissioned high-repetition-rate LCLS-II X-ray free electron laser. The orders-of-magnitude X-ray flux improvement provided by the superconducting accelerator, combined with corresponding advances in the optical laser system and the liquid jet recirculation system, enables studies on dilute systems with high signal-to-noise compared to what was possible with the LCLS-I copper accelerator. These capabilities open up time-resolved X-ray absorption spectroscopy and resonant inelastic X-ray scattering to entirely new classes of samples, as well as enabling the development of new soft X-ray spectroscopies on liquid samples. An overview of the beamline components and the first LCLS-II commissioning results are presented. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2603_26774 |
| institution | arXiv |
| publishDate | 2026 |
| record_format | arxiv |
| spellingShingle | The chemRIXS Instrument for the LCLS-II X-Ray Free Electron Laser Hoffman, David J. Garratt, Douglas Bain, Matthew Hampton, Christina Y. Poulter, Benjamin I. Joshi, Jyoti Coslovich, Giacomo O'Dowd, Frank P. DePonte, Daniel P. Reid, Alexander H. Shen, Lingjia Jost, Daniel Bionta, Mina R. Turner, Joshua J. Lin, Ming-Fu Heimann, Philip Moeller, Stefan P. Koralek, Jake D. Johnson, Tyler Ninh, K Almeida, Raybel Berges, Adam Fung, Stephanie Li, Shuai Pelimanni, Eetu Nimmrich, Amke Khalil, Munira Young, Linda Wolf, Thomas J. A. Kunnus, Kristjan Dakovski, Georgi L. Instrumentation and Detectors Accelerator Physics Chemical Physics The chemRIXS instrument at the Linac Coherent Light Source offers new opportunities for studying solution-phase systems with time-resolved soft X-ray spectroscopy through the recently commissioned high-repetition-rate LCLS-II X-ray free electron laser. The orders-of-magnitude X-ray flux improvement provided by the superconducting accelerator, combined with corresponding advances in the optical laser system and the liquid jet recirculation system, enables studies on dilute systems with high signal-to-noise compared to what was possible with the LCLS-I copper accelerator. These capabilities open up time-resolved X-ray absorption spectroscopy and resonant inelastic X-ray scattering to entirely new classes of samples, as well as enabling the development of new soft X-ray spectroscopies on liquid samples. An overview of the beamline components and the first LCLS-II commissioning results are presented. |
| title | The chemRIXS Instrument for the LCLS-II X-Ray Free Electron Laser |
| topic | Instrumentation and Detectors Accelerator Physics Chemical Physics |
| url | https://arxiv.org/abs/2603.26774 |