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Researchers gain beamline experience at SESAME through SUNSTONE training

Ivy Delaney
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Participants gained direct exposure to this technique, building on prior knowledge from general lectures and online sessions that introduced synchrotron radiation and data analysis methods. The hands-on training, the in-person culmination of the SUNSTONE program, focused on methods like X-ray absorption fine structure spectroscopy at the BM08-XAFS/XRF beamline, alongside environmental science and archaeometry schools. PhysicsLarge Hadron Collider search rules out quantum black holes with certain propertiesQuantum Research NewsNew Quantum Spintronics Center Launches with German-Korean TiesPhysicsNew magnets aim to meet positron demands of 91km colliderStay currentSee today’s quantum computing news on Quantum Zeitgeist for the latest breakthroughs in qubits, hardware, algorithms, and industry deals.
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Twenty-nine researchers from thirteen countries, including Botswana, Cameroon, and Zimbabwe, recently gained practical experience at SESAME, applying newly honed skills in synchrotron techniques. The hands-on training, the in-person culmination of the SUNSTONE program, focused on methods like X-ray absorption fine structure spectroscopy at the BM08-XAFS/XRF beamline, alongside environmental science and archaeometry schools. “I am delighted to see the SUNSTONE hands-on training come to fruition at the SESAME synchrotron,” said Hubert Chevreau, leader of SUNSTONE Work Package 3 at SOLEIL, emphasizing the importance of collaboration and scientific excellence across the Middle East and Africa. The Science in operando school centered on X-ray absorption fine structure spectroscopy, utilizing the BM08-XAFS/XRF beamline to provide focused practical experience. Participants gained direct exposure to this technique, building on prior knowledge from general lectures and online sessions that introduced synchrotron radiation and data analysis methods. This hands-on component allowed researchers to translate theoretical understanding into experimental practice alongside SESAME’s beamline scientists, fostering a collaborative environment for scientific advancement, the company says. Researchers also received specialized training in environmental science and archaeometry, employing soft X-ray techniques at the ID11L-HESEB and ID11R-TXPES beamlines, and synchrotron X-ray computed tomography at the ID10-BEATS beamline, respectively.

Latif Ullah Khan and Messaoud Harfouche spearheaded the XAFS instruction, while Abdellatif SaadAldin led the BEATS training, demonstrating a targeted approach to knowledge transfer.

Mustafa Fatih Genişel, Ahlam Farhan, and Zeynep Ozturk oversaw activities at the HESEB and TXPES facilities, further diversifying the expertise imparted during the week-long program. Beyond experimental techniques, the training addressed a critical, often overlooked aspect of synchrotron research: proposal writing. Gihan Kamel delivered lectures focused on crafting successful proposals, guiding participants in formulating clear, technically sound requests for synchrotron beamtime. The program’s structure, combining theoretical instruction with practical application and proposal development, aimed to equip researchers with a comprehensive skillset for maximizing the impact of synchrotron radiation in their respective fields. Source: https://www.sesame.org.jo/news/sunstone-hands-training-brings-researchers-sesames-beamlines More like thisPhysicsCurtin University finds a black hole’s ‘burp’ timing doesn’t depend on size.PhysicsLarge Hadron Collider search rules out quantum black holes with certain propertiesQuantum Research NewsNew Quantum Spintronics Center Launches with German-Korean TiesPhysicsNew magnets aim to meet positron demands of 91km colliderStay currentSee today’s quantum computing news on Quantum Zeitgeist for the latest breakthroughs in qubits, hardware, algorithms, and industry deals. Tags: Ivy Delaney Ivy Delaney has been working with neural networks and machine learning since the mid-nineties, back when a couple of hidden layers and a long afternoon of training counted as ambitious. She has watched the field go from academic curiosity to the thing quietly running underneath everything, and she brings that long view to quantum computing.

For Quantum Zeitgeist she covers the ground where the two fields meet. That means quantum machine learning and the variational algorithms it leans on, and it also means the less glamorous but more interesting story of classical machine learning already doing real work inside quantum machines, decoding error-correcting codes, calibrating noisy hardware and learning the error models that simulators depend on. She writes about the hardware those algorithms have to run on too, and about the post-quantum cryptography scramble that the same hardware has set off. Her stories typically start with the paper, whether that is peer-reviewed work, conference proceedings or an arXiv preprint, with the source linked so you can hold a claim up against the research it came from. She is unimpressed by benchmarks that will not say what they beat, and by demonstrations that only work in the press release. Latest Posts by Ivy Delaney: SEALSQ, WISeKey and Jura Canton Plan Swiss Quantum Security Center September 21, 2026 Quantum Zeitgeist Weekly Digest September 21, 2026 Curtin University finds a black hole’s ‘burp’ timing doesn’t depend on size. September 19, 2026

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