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News highlights featuring Fermilab

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Dispositivo criado no Brasil para experimento internacional com neutrinos é aprimorado

    From FAPESP, Feb. 13, 2019: Uma parte vital de um dos maiores experimentos da física de partículas atual foi desenvolvida no Brasil. O Arapuca é um detector de luz a ser instalado no Deep Underground Neutrino Experiment — projeto que busca descobrir novas propriedades dos neutrinos, partícula elementar com muito pouca massa e que viaja a uma velocidade muito próxima à da luz.

    The poetry of the Dark Energy Survey

      From 365 Days of Astronomy, Feb. 9, 2019: In this podcast, The Dark Energy Survey started in 2013 to map dark energy over 5000 square degrees of sky. Writer and poet Amy Catanzano visited Cerro Tololo Inter-American Observatory during the Dark Energy Survey. In this podcast, Amy discusses her work in quantum poetics, her experience with the Dark Energy Survey and shares some of her poetry.

      Fermilab open house draws the curious to Batavia

        From The Beacon-News, Feb. 10, 2019: Thousands of children and their parents put science on their radar Sunday as Fermilab held its annual open house event. For four hours, families were able to tour and explore the space Fermilab calls, “America’s premier particle physics and accelerator laboratory” and, according to staff, “show what we do and what’s possible here.”

        Particle physics is doing just fine

          From Slate, Jan. 31, 2019: In science, lack of discovery can be just as instructive as discovery. Finding out that there are no particles where we had hoped tells us about the distance between human imagination and the real world. It can operate as a motivation to expand our vision of what the real world is like at scales that are totally unintuitive.

          Designing magnets for the world’s largest particle collider

            From IEEE Spectrum, Jan. 30, 2019: If realized, the Future Circular Collider will produce magnetic fields nearly twice as strong as the LHC and accelerate particles to unprecedented energies of 100 teraelectron volts, compared to the Large Hadron Collider’s energies of 13 TeV. Whereas the magnetic system at the LHC can achieve strengths of 8.3 teslas, the FCC system would be able to achieve 16 T.