What a pleasure to be part of Osborne Reynolds Day at The University of Manchester in collaboration with ERCOFTAC last week to engage with some of the brightest minds in the field of fluid mechanics. Our co-founder and director, David Standingford was invited to provide a brief introduction to ERCOFTAC, including its structure based on scientific research and its numerous publications and events which serve a global audience. Congratulations to the winner of this year’s competition, Dr Chris Goodwin, PhD, whose outstanding work on quantum turbulence in superfluid helium has introduced an innovative perspective on turbulence. Special mention for the other winners: Runner-up presentation: James Shemilt Runner-up presentation: Sam Hartharn-Evans Best posters: Muting Hao & Hilde Metzger Read more here: https://lnkd.in/dTEhwA4v #FluidMechanics #OsborneReynoldsDay
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A successful team is built on four pillars: 🌟 An inspiring PI to set the vision and lead with passion. 🎯 Clear, ambitious goals to drive focus and purpose. 💫 Good vibes and team spirit to overcome challenges together. 💪 Great effort and collaboration to turn ideas into results. Proud to see how these elements come together in projects like TheMa Let’s keep moving forward—stronger, smarter, and always inspired. #Leadership #Teamwork #Innovation #ProjectManagement
A warm welcome to our new customers, Alexandros El Sachat, Ph.D and his team from the National Center for Scientific Research "Demokritos", Greece. With the help of their recently acquired Park NX-Hivac AFM, they will investigate local and electric properties, as well as the nanoscale thermal transport in 2D materials, all under the high vacuum conditions. We can't wait to see the innovative discoveries that lie ahead! Learn more about the NX-Hivac from Park Systems, a high-vacuum AFM for Failure Analysis and atmosphere-sensitive materials research: https://okt.to/yWlebZ #NXHivac #vacuumAFM
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📰 The possibility of phase transitions in magnetic #quantum spin models within a #wavefunction-only framework is explored, showing that #magnetization arises only when particles are indistinguishable and energy conservation limits macroscopic superpositions. The research uses probability theory and large deviation techniques to address these phenomena, offering insights into quantum thermodynamic ensembles. 👨🎓 Leonardo De Carlo, Leonardo De Carlo 📺 Full Video: https://lnkd.in/gKn6adqU 📰 This video is adapted from the paper: 10.3390/e25040564 published by Entropy MDPI #quantummagnetism #wavefunction #deviations
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Excited to share that I’ll be presenting at APS DAMOP, celebrating 125 years of the American Physical Society! 🌟 My talk will focus on the emulation of black holes with surface gravity waves, a fascinating intersection of fluid dynamics and hawking radiation. I'll be diving into the intricacies of how these waves can be used to observed the event horizon in phase space of a black hole and their potential applications in fundamental physcis. During the poster session, I'll be showcasing our vision for ultra cold coherent chemistry with NaLi molecules. This cutting-edge research aims to explore new frontiers in chemical interactions at ultra-low temperatures, opening doors to revolutionary advancements in chemistry and quantum mechanics. 🪑Additionally, I have the honor of chairing two significant sessions: Session B07: Advances in Formal Quantum Theory Session F04: Quantum Gates for Trapped Ions These sessions will bring together some of the brightest minds to discuss the latest breakthroughs and innovations in quantum theory and technology. Looking forward to engaging discussions and insightful exchanges! See you there! #QuantumPhysics #BlackHoles #SurfaceGravityWaves #UltracoldChemistry #QuantumTheory #TrappedIons #APS125 #DAMOP2024 #ResearchInnovation
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Yesterday, we finished a bit more than a standard beamtime. Did you know that ReMade@ARI can support your research in Circular Economy at every stage from materials' manufacturing to advanced characterization at neutron and synchrotron sources? In this project, I was honored to collaborate with Helmholtz-Zentrum Dresden-Rossendorf (HZDR) where the ion beam modification of GaAs substrates was made with subsequent deposition of metal and metal-oxide active layers. A dedicated operando cell designed at PSI Paul Scherrer Institut allowed us to perform XAS experiment in grazing incidence geometry at DESY. Complementary AFM and STEM measurements are also provided in frame of ReMade project. By the way, today is the deadline for Call IV of ReMade@ARI. Next call opens in spring 2025. One proposal = complete investigation. #catalysis #circulareconomy #ionbeam #beamtime #xrays #synchrotron
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📢 Excited to announce the publication of our new article! ✨ Through the combination of single crystal measurements, synchrotron radiation experiments and theoretical modeling, we have demonstrated for the first time the reversible control of magnetic anisotropy in a molecular lanthanide complex adsorbed on a surface! 🔬 Check out the full article here! 📄 [Link: https://lnkd.in/eiUHbjXd] #ERCResearch #MolecularMagnetism #WileyInResearch
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The first of six sextupole chambers for GSI particle accelerator has been successfully installed in a high-performance magnet system. This marks an important step in a cutting-edge project that will have a significant impact in advanced scientific research. The GSI Helmholtz Centre for Heavy Ion Research in Darmstadt operates a worldwide leading accelerator facility for research purposes, to reach a better understanding of the structure and behavior of the world that surrounds us. But what exactly is a sextupole chamber? A sextupole chamber is a specialized vacuum component used in particle accelerators and synchrotrons. It’s designed to house a sextupole magnet, which focuses and stabilizes particle beams by correcting aberrations caused by the non-linear nature of magnetic fields. By stabilizing the beam and enhancing its focus, sextupole chambers play a vital role in enabling groundbreaking discoveries and pushing the boundaries of what’s possible in science and technology. Next up: more chambers to go! We're making steady progress toward completing this exciting project. #SAESHighVacuum #SextupoleChamber #ParticleAccelerators #Synchrotron #ScientificInnovation DANFYSIK A/S SAES High Vacuum
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In collaboration with the Paul Scherrer Institute, the University of Cambridge and others, we've published a new paper in Physical Review Accelerators and Beams, reporting experimental results of a YBCO bulk superconducting undulator magnetic optimisation. The magnetic field optimisation of RE-Ba-Cu-O (REBCO, RE=rare earth) bulk superconducting undulators is a fundamental step toward their implementation in an accelerator driven photon source, like a synchrotron or a free electron laser. We propose a sorting algorithm to reduce the undulator’s phase error based on the reconstruction of the trapped current inside the bulks of a staggered array undulator. The results obtained with a YBCO short prototype field-cooled down to 10 K in a 10 T magnetic field are reported, which suggest a potential improvement in the homogeneity of the on-axis undulator field of a full scale prototype by more than an order of magnitude. The paper can be downloaded, open access, here: https://lnkd.in/eYFN_C2E
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📢 Yesterday, I had the privilege of presenting at the Clay Conference 2024, sharing the latest experimental findings on Opalinus Clay and a comparative analysis of other European shales and claystones. Our research reveals that the analyzed geomaterials exhibit consistent behavior, allowing hydro-mechanical parameters to be estimated from basic properties. These insights provide a valuable framework for the preliminary evaluation of clay formations with limited data and for site screening processes. The results and analysis were obtained in the context of a project with Nagra - Nationale Genossenschaft für die Lagerung radioaktiver Abfälle. I would like to acknowledge my colleagues at Nesol - Numerical Engineering Solutions, Nagra, and the laboratories involved in the experimental testing. #ClayConference2024 #OpalinusClay #RadioactiveWasteManagement
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We have made significant contributions to the understanding of monolayer FeSe, a groundbreaking high-temperature superconductor, through a series of impactful publications. In an exciting new development, under the leadership of Dr. Khalil Zakeri from the Karlsruhe Institute of Technology (KIT) Germany, we have utilized high-resolution electron energy-loss spectroscopy (HREELS) to uncover critical new insights into the unique properties of monolayer FeSe. This study represents a step forward in unraveling the mysteries of this extraordinary material and its potential applications in next-generation quantum technologies. https://lnkd.in/g8_c2csX
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[Event info] J-OCTA will exhibit at CECAM(Centre Européen de Calcul Atomique et Moléculaire)) international workshop to be held from June 26 to 28, at University of Lincoln, UK. And, We will have a presentation about multiscale modeling of soft matter on the second day. In the soft matter simulation, combination of simulations/theories at different scales is useful to capture various phenomena. In this presentation, some examples of mesoscale simulations and the capabilities of J-OCTA will be discussed. We look forward to your visit! Detail: https://lnkd.in/gCyaTrgn #cecam #exhibition #molecularmodeling #moleculardynamics #simulation #softmatter
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