K.R. Julian Chun explains the mapping and energy selection strategy using the Affera system. He highlights an area of interest on the roof of the left atrium where ablation will be performed. Prof Julian Chun details their preference for using RF energy for anterior lines while favouring pulsed field ablation in other regions, including this site. He underscores the importance of switching to PFA near sensitive structures, like the phrenic nerve, for safety reasons. The video concludes with the initiation of the first ablation application using PFA.
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Curious about Zetona? This Youtube short is for you... Check out our recent video all about Zeptona: The ultimate in low noise Faraday detection! ATONA is an ultra-high performance Faraday amplifier system for isotope ratio MS. The Zeptona system takes this a step further with even lower noise, meaning it is ideal for low abundance isotopes and a perfect tool for U-Pb geochronology. To find out more, watch the full video here: https://ow.ly/bayt50U4nT0
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📰#titlestory: "High Harmonic Generation Seeding Echo-Enabled Harmonic Generation toward a Storage Ring-Based Tender and Hard X-ray-Free Electron Laser" by Xi Yang, et al. To align with the global trend of integrating synchrotron light source (SLS) and free electron laser (FEL) facilities on one site, the authors actively explore FEL options leveraging the ultralow-emittance electron beam of the NSLS-II upgrade. https://lnkd.in/gUuPJDec
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📰#titlestory: "High Harmonic Generation Seeding Echo-Enabled Harmonic Generation toward a Storage Ring-Based Tender and Hard X-ray-Free Electron Laser" by Xi Yang, et al. To align with the global trend of integrating synchrotron light source (SLS) and free electron laser (FEL) facilities on one site, the authors actively explore FEL options leveraging the ultralow-emittance electron beam of the NSLS-II upgrade. https://lnkd.in/gJ2CtzNs
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Our new YouTube Shorts series is here! Check out our recent video all about ATONA: isotope ratio detector system with ultra-low noise levels! ATONA is an ultra-high performance Faraday amplifier system for isotope ratio MS. As well as rapid Tau response and a huge dynamic range, it exhibits significantly lower noise levels than equivalent resistor-based Faraday amplifier systems. To find out more, watch the full video here: https://ow.ly/BCAb50U4obO
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Happy to share our recently published work: Transition of piezoresistive gauge factor tuned by lateral size in MoS2 and WS2 networks https://lnkd.in/erhgb94x
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In the system of radiesthesia, dome structures operate as passive torsion generators, emitting powerful negative green energy signatures.
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At AGT, we specialize in the gDAS-32 Distributed Array System, a versatile solution for electromagnetic surveys. Our system provides flexible, cost-effective data acquisition for Induced Polarization (IP), Magnetotellurics (MT), Controlled Source Electromagnetics (CSEM), and more, with advanced processing software to ensure high-quality results. Learn more about our innovative geophysical solutions in the info-sheet below!
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New Blog Alert! Stray magnetic fields can seriously disrupt traditional Faraday rotation isolators, leading to poor performance and reliability issues. However, our isolators are designed with a strong magnetic bias field that puts them in a state of magnetic saturation. Therefore, even very strong stray magnetic fields have no impact on the performance of our isolators. Check out our latest blog to learn more about why Faraday rotation isolators are sensitive to magnetic fields: https://lnkd.in/g6GDnjc6
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How much can 10 nm of precursor material at the burried interface affect the optoelectronic properties of 500 nm of perovskite grown atop? Quite a lot apparently! Read more about it in my publication "Seed Layers for Wide-Band Gap Coevaporated Perovskite Solar Cells: CsCl Regulates Band Gap and Reduces Process Variability" https://lnkd.in/eq5WMjcP
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Just out in Physical Review Letters, our final paper for this year (https://lnkd.in/gtj92Xzp) presents a new method for reducing atom interferometer device sizes while retaining high sensitivity to changes in gravity. The lead author, Yosri Ben-Aïcha, showed that a clever adaptation of the dual interferometer technique can be used to strongly suppress phase changes due to changes in the initial atom velocity and position, paving the way for its use in challenging environments.
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